👤 Xuanchi Zhu

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1043
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741
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Also published as: Afang Zhu, Aijun Zhu, Aiqing Zhu, Allen Zhu, An Zhu, An-Qi Zhu, Anding Zhu, Bao-Sheng Zhu, Baoli Zhu, Biao Zhu, Bin Zhu, Bing Zhu, Bingzi Zhu, Binna Zhu, Biying Zhu, Bo Zhu, Bochen Zhu, Boheng Zhu, Bokai Zhu, C-H Zhu, Caifeng Zhu, Can Zhu, Cansheng Zhu, Chan-Yan Zhu, Chang Qing Zhu, Changhong Zhu, Changsheng Zhu, Changyan Zhu, Changyou Zhu, Chao Zhu, Chaofeng Zhu, Chaojun Zhu, Chaonan Zhu, Chaowang Zhu, Chaoyu Zhu, Chen Zhu, Chen-Tseh Zhu, Chen-Xi Zhu, Chenchen Zhu, Cheng Zhu, Cheng-Gang Zhu, Chenghao Zhu, Chengliang Zhu, Chenglou Zhu, Chenxi Zhu, Chongtao Zhu, Chunhong Zhu, Chunhua Zhu, Chunni Zhu, Chunyan Zhu, Chunyue Zhu, Cong Zhu, Congcong Zhu, Conghua Zhu, Cunle Zhu, D Y Zhu, Da Zhu, Dakai Zhu, Dalong Zhu, Dan Zhu, Dandan Zhu, Danyan Zhu, Danyang Zhu, David C Zhu, Denghui Zhu, Desheng Zhu, Di Zhu, Dingliang Zhu, Dong-Ya Zhu, Dongbing Zhu, Dongdong Zhu, Donghui Zhu, Dongli Zhu, Dongmei Zhu, Dongxu Zhu, Du Zhu, Ethan Y S Zhu, F Y Zhu, Fangcheng Zhu, Fangjie Zhu, Fangmei Zhu, Fangyi Zhu, Fei Zhu, Fei-Feng Zhu, Feiqi Zhu, Feiyan Zhu, Feng Zhu, Fengcai Zhu, Fenglan Zhu, Fenxia Zhu, Fu Zhu, Fuquan Zhu, Gaizhi Zhu, Gaohong Zhu, Gaohui Zhu, Genying Zhu, Gord Guo Zhu, Guangheng Zhu, Guanglin Zhu, Guangshuo Zhu, Guangyu Zhu, Guangzhi Zhu, Guijie Zhu, Guirong Zhu, Guixin Zhu, Guo-Ping Zhu, Guofu Zhu, Guohui Zhu, Guoming Zhu, Guoqiang Zhu, Guoqing Zhu, H P Zhu, H S Zhu, H Zhu, Hai-Bo Zhu, Hai-Chuan Zhu, Hai-Yan Zhu, Haichao Zhu, Haichuan Zhu, Haifeng Zhu, Haihong Zhu, Haijun Zhu, Hailin Zhu, Haiming Zhu, Haitao Zhu, Haixia Zhu, Haiying Zhu, Haizhen Zhu, Han Zhu, Han-Ying Zhu, Han-Yu Zhu, HanYu Zhu, Hang Zhu, Hangbo Zhu, Hanxu Zhu, Hanyong Zhu, Hanzhao Zhu, Hao Zhu, Hao-Jie Zhu, Haohua Zhu, Haojie Zhu, Haojun Zhu, Haoxue Zhu, He Zhu, Heng Zhu, Hengcheng Zhu, Hengshan Zhu, Hong Zhu, Hong-Hu Zhu, Hong-Zhe Zhu, Hongbin Zhu, Hongbo Zhu, Honghong Zhu, Hongmei Zhu, Hongming Zhu, Hongqing Zhu, Hongwen Zhu, Hongyan Zhu, Hongyi Zhu, Houwei Zhu, Hua Zhu, Hua-Long Zhu, Huaiyi Zhu, Hualong Zhu, Huamin Zhu, Huaming Zhu, Huanfeng Zhu, Huang Zhu, Huanxi Zhu, Huapei Zhu, Hui Zhu, Hui-Ling Zhu, Hui-Ting Zhu, Huijuan Zhu, Huilian Zhu, Huiling Zhu, Huimin Zhu, Huiqing Zhu, Huixia Zhu, Huolan Zhu, J W Zhu, J Zhu, J-K Zhu, Jia Zhu, Jia-Hao Zhu, Jia-Hui Zhu, Jia-Yu Zhu, Jiabei Zhu, Jiajie Zhu, Jiajun Zhu, Jiali Zhu, Jialin Zhu, Jiamin Zhu, Jian Zhu, Jian-Fu Zhu, Jian-Hong Zhu, Jian-Kang Zhu, Jian-Min Zhu, Jiang Zhu, Jiang-Jiang Zhu, JiangJiang Zhu, Jianguo Zhu, Jianhong Zhu, Jianhua Zhu, Jianhui Zhu, Jianjun Zhu, Jianli Zhu, Jianlin Zhu, Jianmin Zhu, Jianwei Zhu, Jianyong Zhu, Jiaojiao Zhu, Jiaping Zhu, Jiaqi Zhu, Jiaqiang Zhu, Jiaqing Zhu, Jiayao Zhu, Jiayi Zhu, Jiaying Zhu, Jiayu Zhu, Jie Zhu, Jiejie Zhu, Jifeng Zhu, Jimiao Zhu, Jin Zhu, Jinfeng Zhu, Jing Zhu, Jing-Zhong Zhu, Jingjie Zhu, Jingjing Zhu, Jingwen Zhu, Jingze Zhu, Jinhong Zhu, Jinjin Zhu, Jinpeng Zhu, Jinrong Zhu, Jinwei Zhu, Jinyi Zhu, Jinyun Zhu, Jiyuan Zhu, Ju Zhu, Ju-Fen Zhu, Juanhua Zhu, Juming Zhu, Jun Zhu, Jun-Jie Zhu, Jun-Ming Zhu, Jun-Rong Zhu, Jun-Yi Zhu, Junfeng Zhu, Junji Zhu, Junjia Zhu, Junjie Zhu, Junlong Zhu, Junwei Zhu, Junxian Zhu, Kai Zhu, Kaibin Zhu, Kaicheng Zhu, Kaihua Zhu, Kaina Zhu, Kanglin Zhu, Ke Zhu, Kexuan Zhu, Keyu Zhu, Kezhou Zhu, Kongjun Zhu, Kun Zhu, Kunfeng Zhu, L Y Zhu, Lei Zhu, Leqing Zhu, Li Zhu, Li-Fang Zhu, Li-Zeng Zhu, LiFang Zhu, Liang Zhu, Lianghao Zhu, Liangxi Zhu, Lifeng Zhu, Lihua Julie Zhu, Lijuan Zhu, Lijun Zhu, Limei Zhu, Lin Zhu, Lina Zhu, Linfeng Zhu, Ling Zhu, Lingjun Zhu, Lingpeng Zhu, Lingxiao Zhu, Lingyi Zhu, Lingyun Zhu, Linlin Zhu, Linxin Zhu, Liping Zhu, Liqin Zhu, Liren Zhu, Lixia Zhu, Lixin Zhu, Liyong Zhu, Liyun Zhu, Lizhen Zhu, LongXun Zhu, Lu Zhu, Luoning Zhu, M Zhu, Man Zhu, Maoling Zhu, Mei Zhu, Mei-Dong Zhu, Meili Zhu, Meiqi Zhu, Meizi Zhu, Meng Zhu, Meng-Die Zhu, Mengbo Zhu, Menglin Zhu, Mengmeng Zhu, Mengpei Zhu, Mengyan Zhu, Mengyao Zhu, Mengyi Zhu, Mengyu Zhu, Miaojuan Zhu, Michael X Zhu, Min Zhu, Min-Ling Zhu, Ming An Zhu, Ming Zhu, Ming-An Zhu, Ming-Qiang Zhu, Mingwei Zhu, Mingxia Zhu, Mingyan Zhu, Mingyu Zhu, Mingyue Zhu, Minjia Zhu, Muyuan Zhu, Nan Zhu, Nannan Zhu, Ni Zhu, Ning Zhu, Ningyu Zhu, P Zhu, Paula K Zhu, Pei-Lin Zhu, Peiyu Zhu, Peng Zhu, Peng-Cheng Zhu, Pengcheng Zhu, Pengfei Zhu, Pengju Zhu, Ping Zhu, Pingping Zhu, Qi Zhu, Qian Zhu, Qiancheng Zhu, Qiang Zhu, Qihang Zhu, Qilu Zhu, Qin-Feng Zhu, Qing Zhu, Qing-Ling Zhu, Qing-Ru Zhu, QingTang Zhu, Qingfeng C Zhu, Qinghong Zhu, Qinglan Zhu, Qingru Zhu, Qingxiu Zhu, Qingyun Zhu, Qinxin Zhu, Qinyuan Zhu, Qiongjun Zhu, Qiqi Zhu, Quangang Zhu, Qubo Zhu, Ran Zhu, Rang-Teng Zhu, Ren-Min Zhu, Ronghui Zhu, Rui Zhu, Rui-Fang Zhu, Ruichi Zhu, Ruijie Zhu, Ruijue Zhu, Ruiqi Zhu, Ruiqing Zhu, Ruirui Zhu, Ruixia Zhu, Ruiyang Zhu, Ruiyi Zhu, Runkang Zhu, Runze Zhu, Shaihong Zhu, Shanfeng Zhu, Shankuan Zhu, Shaojin Zhu, Shaoliang Zhu, Shaomin Zhu, Shaoyuan Zhu, Shaoyue Zhu, Shasha Zhu, Shenghua Zhu, Shengmei Zhu, Shengwei Zhu, Shenshen Zhu, Shibai Zhu, Shihui Zhu, Shiqi Zhu, Shirley X Zhu, Shiyu Zhu, Shou-Jun Zhu, Shouan Zhu, Shoujia Zhu, Shuai Zhu, Shuaishuai Zhu, Shuang Zhu, Shujuan Zhu, Si-Tong Zhu, Si-Xian Zhu, Sibo Zhu, Sijia Zhu, Sipin Zhu, Siqi Zhu, Siran Zhu, Siwei Zhu, Song Zhu, Songcheng Zhu, Suhui Zhu, Suiqiang Zhu, Sunting Zhu, Tao Zhu, Teng-Teng Zhu, Tengfei Zhu, Tengteng Zhu, Tian Zhu, Tian-gang Zhu, Tiangang Zhu, Tianhang Zhu, Tianqing Zhu, Tianwen Zhu, Tianyi Zhu, Tianyue Zhu, Tiebing Zhu, Tingting Zhu, Tong Zhu, Tongyu Zhu, Wan Zhu, Wanglong Zhu, Wanlin Zhu, Wei Zhu, Wei-Fen Zhu, Wei-Guo Zhu, Wei-Rong Zhu, Wei-Zhong Zhu, Weiguo Zhu, Weihao Zhu, Weiliang Zhu, Weimin Zhu, Weiming Zhu, Weiwei Zhu, Weiyao Zhu, Weiyou Zhu, Weiyu Zhu, Wen Zhu, Wen-Hua Zhu, Wen-Qiang Zhu, Wen-Qing Zhu, Wenbin Zhu, Wencheng Zhu, Wenge Zhu, Wengen Zhu, Wenhao Zhu, Wenjian Zhu, Wenjiao Zhu, Wenjie Zhu, Wenjuan Zhu, Wenjun Zhu, Wenping Zhu, Wenqiang Zhu, Wentao Zhu, Wenye Zhu, Wenyuan Zhu, Wenzhen Zhu, X L Zhu, X Zhu, Xi Zhu, Xi-Hai Zhu, Xi-Wen Zhu, Xialin Zhu, XianJie Zhu, Xiang-Yang Zhu, Xiang-Yu Zhu, Xiangjie Zhu, Xianqiong Zhu, Xiao Zhu, Xiao-Chen Zhu, Xiao-Cong Zhu, Xiao-Dong Zhu, Xiao-Feng Zhu, Xiao-Li Zhu, Xiao-Rong Zhu, Xiao-Shan Zhu, Xiao-Ting Zhu, Xiao-Xia Zhu, Xiao-yan Zhu, Xiaodan Zhu, Xiaodong Zhu, Xiaofan Zhu, Xiaofeng Zhu, Xiaohui Zhu, Xiaojian Zhu, Xiaojie Zhu, Xiaojing Zhu, Xiaojuan Zhu, Xiaojun Zhu, Xiaolei Zhu, Xiaoli Zhu, Xiaoming Zhu, Xiaoqi Zhu, Xiaoqun Zhu, Xiaoting Zhu, Xiaowei Zhu, Xiaowen Zhu, Xiaoxi Zhu, Xiaoyan Zhu, Xiaoyang Zhu, Xiaoyi Zhu, Xiaoyu Zhu, Ximing Zhu, Xin Zhu, Xin-Hua Zhu, Xin-Yi Zhu, Xin-Yu Zhu, Xing-Long Zhu, Xingcheng Zhu, Xinghai Zhu, Xinguo Zhu, Xingyu Zhu, Xingyun Zhu, Xinhua Zhu, Xinping Zhu, Xinrui Zhu, Xinting Zhu, Xinwu Zhu, Xinxia Zhu, Xinxing Zhu, Xinyao Zhu, Xinyue Zhu, Xiong-Bai Zhu, Xiongjie Zhu, Xirui Zhu, Xu Zhu, Xu-Guang Zhu, Xuanyu Zhu, Xudong Zhu, Xue Zhu, Xue-Yan Zhu, Xuechen Zhu, Xuejiao Zhu, Xuejie Zhu, Xueliang Zhu, Xueqiong Zhu, Xueting Zhu, Xuewei Zhu, Xuezhen Zhu, Xuming Zhu, Xuping Zhu, Y X Zhu, Y Zhu, Yalin Zhu, Yaling Zhu, Yalong Zhu, Yan Zhu, Yan-Bin Zhu, Yan-Ling Zhu, Yan-Ting Zhu, Yanan Zhu, Yanchen Zhu, Yanfang P Zhu, Yanfang Peipei Zhu, Yanfei Zhu, Yang Zhu, Yanglin Zhu, Yanhong Zhu, Yaning Zhu, Yanjie Zhu, Yanjing Zhu, Yanjuan Zhu, Yanli Zhu, Yanping Zhu, Yanqi Zhu, Yanrong Zhu, Yanxia Zhu, Yanzhe Zhu, Yao Zhu, Yaojin Zhu, Yaping Zhu, Yaqun Zhu, Yawen Zhu, Yefei Zhu, Yeke Zhu, Yemin Zhu, Yi Zhu, Yi Zhun Zhu, Yi-Chun Zhu, Yi-Fan Zhu, Yi-Min Zhu, Yi-Yi Zhu, Yifan Zhu, Yihao Zhu, Yijian Zhu, Yijun Zhu, Yilei Zhu, Yimin Zhu, Yin Zhu, Yinchao Zhu, Yineng Zhu, Ying Zhu, Ying-Ying Zhu, Yingdong Zhu, Yingfang Zhu, Yinghong Zhu, Yingjie Zhu, Yingli Zhu, Yingnan Zhu, Yingying Zhu, Yining Zhu, Yinnan Zhu, Yinsheng Zhu, Yiping Zhu, Yiqi Zhu, Yiwei Zhu, Yixing Zhu, Yiyan Zhu, Yong Zhu, Yong-Bing Zhu, Yongfei Zhu, Yongheng Zhu, Yonghong Zhu, Yongjun Zhu, Yongkang Zhu, Yongkun Zhu, Yongmei Zhu, Yongming Zhu, Yongping Zhu, Yongqun Zhu, Yongtong Zhu, Yongwei Zhu, Yongwen Zhu, Yongzhao Zhu, Youcai Zhu, Yu Zhu, Yu-Nan Zhu, Yu-Yuan Zhu, Yuan Zhu, Yuan-Zheng Zhu, Yuan-fang Zhu, Yuan-gui Zhu, Yuangang Zhu, Yuanhui Zhu, Yuankui Zhu, Yuanpeng Zhu, Yuanqiang Zhu, Yuantee Zhu, Yuanting Zhu, Yuanxin Zhu, Yuanyuan Zhu, Yuchen Zhu, Yuchi Zhu, Yue Zhu, Yue-Ping Zhu, Yuefeng Zhu, Yuekun Zhu, Yueping Zhu, Yufei Zhu, Yuhan Zhu, Yuhua Zhu, Yumei Zhu, Yuming Zhu, Yun Zhu, Yunfei Zhu, Yunling Zhu, Yunqing Zhu, Yunzhen Zhu, Yuping Zhu, Yuqian Zhu, Yutian Zhu, Yuwen Zhu, Yuzhe Zhu, Yuzhu Zhu, Z F Zhu, Z-Y Zhu, Zaihan Zhu, Zeren Zhu, Zeyu Zhu, Zezhang Zhu, Zhanzhan Zhu, Zhao Zhu, Zhaohua Zhu, Zhaowei Zhu, Zhaozhong Zhu, Zhe Zhu, Zhenbang Zhu, Zheng Zhu, Zhengbao Zhu, Zhengfeng Zhu, Zhenggang Zhu, Zhenghao Zhu, Zhengming Zhu, Zhengting Zhu, Zhengyu Zhu, Zhenhu Zhu, Zhenjun Zhu, Zhenpeng Zhu, Zhenshuo Zhu, Zhenzhen Zhu, Zheying Zhu, Zhibo Zhu, Zhijie Zhu, Zhijun Zhu, Zhiming Zhu, Zhiqiang Zhu, Zhiyan Zhu, Zhiyong Zhu, Zhong-Yi Zhu, Zhonglin Zhu, Zhongwei Zhu, Zhongxian Zhu, Zhongyi Zhu, Zhou Zhu, Zhouhai Zhu, Zhu Zhu, Zhuoting Zhu, Zijian Zhu, Zijun Zhu, Ziming Zhu, Ziyang Zhu
articles
Huan Wang, Yan Liu, Ling Zhu +6 more · 2014 · International journal of molecular medicine · added 2026-04-24
Estrogen has pleiotropic effects on the cardiovascular diseases, yet the underlying mechanisms remain incompletely understood. Cholesterol efflux is a key mechanism through which to prevent foam cell Show more
Estrogen has pleiotropic effects on the cardiovascular diseases, yet the underlying mechanisms remain incompletely understood. Cholesterol efflux is a key mechanism through which to prevent foam cell formation and the development of atherosclerosis. Recent studies highlight the role of vascular smooth muscle cell (VSMC)-derived foam cells in atherogenesis. However, it remains unclear whether estrogen promotes cholesterol efflux from VSMCs and inhibits VSMC-derived foam cell formation. In the present study, we demonstrated that 17β-estradiol (E2) markedly enhanced cholesterol efflux to apolipoprotein (apo)A-1 and high-density lipoprotein (HDL) and attenuated oxidized low-density lipoprotein (ox-LDL) induced cholesteryl ester accumulation in VSMCs, which was associated with an increase in the expression of ATP-binding cassette transporters ABCA1 and ABCG1. The upregulation of ABCA1 and ABCG1 expression by E2 resulted from liver X receptor (LXR)α activation, which was confirmed by the prevention of the expression of ABCA1 and ABCG1 after inhibition of LXRα with a pharmacological inhibitor or small interfering RNA (siRNA). Furthermore, E2 increased LXRα, ABCA1 and ABCG1 expression in VSMCs via the estrogen receptor (ER), and the involvement of ERβ was confirmed by the use of selective ERα or ERβ antagonists (MPP and PHTPP) and agonists (PPT and DPN). These findings suggest that E2 promotes cholesterol efflux from VSMCs and reduces VSMC-derived foam cell formation via ERβ- and LXRα-dependent upregulation of ABCA1 and ABCG1 and provide novel insights into the anti-atherogenic properties of estrogen. Show less
no PDF DOI: 10.3892/ijmm.2014.1619
NR1H3
Wan Zhu, Gayathri Swaminathan, Edward D Plowey · 2014 · Autophagy · added 2026-04-24
Macroautophagy is a vesicular catabolic trafficking pathway that is thought to protect cells from diverse stressors and to promote longevity. Recent studies have revealed that transcription factors pl Show more
Macroautophagy is a vesicular catabolic trafficking pathway that is thought to protect cells from diverse stressors and to promote longevity. Recent studies have revealed that transcription factors play important roles in the regulation of autophagy. In this study, we have identified GA binding protein (GABP) as a transcriptional regulator of the combinatorial expression of BECN1-PIK3C3 complex genes involved in autophagosome initiation. We performed bioinformatics analyses that demonstrated highly conserved putative GABP sites in genes that encode BECN1/Beclin 1, several BECN1 interacting proteins, and downstream autophagy proteins including the ATG12-ATG5-ATG16L1 complex. We demonstrate that GABP binds to the promoter regions of BECN1-PIK3C3 complex genes and activates their transcriptional activities. Knockdown of GABP reduced BECN1-PIK3C3 complex transcripts, BECN1-PIK3C3 complex protein levels and autophagy in cultured cells. Conversely, overexpression of GABP increased autophagy. Nutrient starvation increased GABP-dependent transcriptional activity of BECN1-PIK3C3 complex gene promoters and increased the recruitment of GABP to the BECN1 promoter. Our data reveal a novel function of GABP in the regulation of autophagy via transcriptional activation of the BECN1-PIK3C3 complex. Show less
no PDF DOI: 10.4161/auto.29454
PIK3C3
Pengyan Xia, Shuo Wang, Guanling Huang +4 more · 2014 · Cell research · Nature · added 2026-04-24
WASH (Wiskott-Aldrich syndrome protein (WASP) and SCAR homolog) was identified to function in endosomal sorting via Arp2/3 activation. We previously demonstrated that WASH is a new interactor of BECN1 Show more
WASH (Wiskott-Aldrich syndrome protein (WASP) and SCAR homolog) was identified to function in endosomal sorting via Arp2/3 activation. We previously demonstrated that WASH is a new interactor of BECN1 and present in the BECN1-PIK3C3 complex with AMBRA1. The AMBRA1-DDB1-CUL4A complex is an E3 ligase for K63-linked ubiquitination of BECN1, which is required for starvation-induced autophagy. WASH suppresses autophagy by inhibition of BECN1 ubiquitination. However, how AMBRA1 is regulated during autophagy remains elusive. Here, we found that RNF2 associates with AMBRA1 to act as an E3 ligase to ubiquitinate AMBRA1 via K48 linkage. RNF2 mediates ubiquitination of AMBRA1 at lysine 45. Notably, RNF2 deficiency enhances autophagy induction. Upon autophagy induction, RNF2 potentiates AMBRA1 degradation with the help of WASH. WASH deficiency impairs the association of RNF2 with AMBRA1 to impede AMBRA1 degradation. Our findings reveal another novel layer of regulation of autophagy through WASH recruitment of RNF2 for AMBRA1 degradation leading to downregulation of autophagy. Show less
no PDF DOI: 10.1038/cr.2014.85
PIK3C3
Pei Li, Cheng Sheng, Lingling Huang +4 more · 2014 · Breast cancer research : BCR · BioMed Central · added 2026-04-24
The miR-183/-96/-182 cluster is a conserved polycistronic microRNA (miRNA) cluster which is highly expressed in most breast cancers. Although there are some sporadic reports which demonstrate the impo Show more
The miR-183/-96/-182 cluster is a conserved polycistronic microRNA (miRNA) cluster which is highly expressed in most breast cancers. Although there are some sporadic reports which demonstrate the importance of each miRNA in this cluster in breast cancer, the biological roles of this cluster as a whole and its regulation mechanisms in breast cancer are still unclear. We compared the expression of this cluster in different cancer types, analyzed the regulation mechanism of this cluster, identified new target genes, and examined the impact of this cluster on breast cancer cells. The miRNA level was detected by LNA-based northern blot and Real-time PCR, and was also analyzed from TCGA dataset. Bioinformatics research and luciferase assay were applied to find the promoter regions and transcription factors. To investigate the biological effects of the miR-183/-96 /-182 cluster in breast cancer, we generated miR-96, miR-182 and miR-183 overexpression stable cell lines to check the overdose effects; we also used miR-Down™ antagomir for each miRNA as well as miR-183/-96 /-182 cluster sponge lentivirus to check the knockdown effects. Growth, migration, cell cycle profile and survival of these cells was then monitored by colony formation assay, MTT assay, cell wound healing assay, flow cytometry and microscopy. The target gene was validated by Real-time PCR, luciferase assay, Western blot and Phalloidin/DAPI counterstaining. The miR-183/-96/-182 cluster was highly expressed in most breast cancers, and its transcription is disordered in breast cancer. The miR-183/-96/-182 cluster was transcribed in the same pri-miRNA and its transcription was regulated by ZEB1 and HSF2. It increased breast cell growth by promoting more rapid completion of mitosis, promoted cell migration and was essential for cell survival. MiR-183 targeted the RAB21 mRNA directly in breast cancer. The miR-183/-96/-182 cluster is up-regulated in most breast cancer. It functions as an oncogene in breast cancer as it increases cell proliferation and migration. Show less
no PDF DOI: 10.1186/s13058-014-0473-z
RAB21
Xiaomu Kong, Xuelian Zhang, Qi Zhao +20 more · 2014 · PloS one · PLOS · added 2026-04-24
Obesity is a well-known risk factor for type 2 diabetes. Genome-wide association studies have identified a number of genetic loci associated with obesity. The aim of this study is to examine the contr Show more
Obesity is a well-known risk factor for type 2 diabetes. Genome-wide association studies have identified a number of genetic loci associated with obesity. The aim of this study is to examine the contribution of obesity-related genomic loci to type 2 diabetes in a Chinese population. We successfully genotyped 18 obesity-related single nucleotide polymorphisms among 5338 type 2 diabetic patients and 4663 controls. Both individual and joint effects of these single nucleotide polymorphisms on type 2 diabetes and quantitative glycemic traits (assessing β-cell function and insulin resistance) were analyzed using logistic and linear regression models, respectively. Two single nucleotide polymorphisms near MC4R and GNPDA2 genes were significantly associated with type 2 diabetes before adjusting for body mass index and waist circumference (OR (95% CI) = 1.14 (1.06, 1.22) for the A allele of rs12970134, P = 4.75×10(-4); OR (95% CI) = 1.10 (1.03, 1.17) for the G allele of rs10938397, P = 4.54×10(-3)). When body mass index and waist circumference were further adjusted, the association of MC4R with type 2 diabetes remained significant (P = 1.81×10(-2)) and that of GNPDA2 was attenuated (P = 1.26×10(-1)), suggesting the effect of the locus including GNPDA2 on type 2 diabetes may be mediated through obesity. Single nucleotide polymorphism rs2260000 within BAT2 was significantly associated with type 2 diabetes after adjusting for body mass index and waist circumference (P = 1.04×10(-2)). In addition, four single nucleotide polymorphisms (near or within SEC16B, BDNF, MAF and PRL genes) showed significant associations with quantitative glycemic traits in controls even after adjusting for body mass index and waist circumference (all P values<0.05). This study indicates that obesity-related genomic loci were associated with type 2 diabetes and glycemic traits in the Han Chinese population. Show less
no PDF DOI: 10.1371/journal.pone.0104486
SEC16B
Jin-Gyoung Jung, Alexander Stoeck, Bin Guan +5 more · 2014 · PLoS genetics · PLOS · added 2026-04-24
The Notch3 signaling pathway is thought to play a critical role in cancer development, as evidenced by the Notch3 amplification and rearrangement observed in human cancers. However, the molecular mech Show more
The Notch3 signaling pathway is thought to play a critical role in cancer development, as evidenced by the Notch3 amplification and rearrangement observed in human cancers. However, the molecular mechanism by which Notch3 signaling contributes to tumorigenesis is largely unknown. In an effort to identify the molecular modulators of the Notch3 signaling pathway, we screened for Notch3-intracellular domain (N3-ICD) interacting proteins using a human proteome microarray. Pathway analysis of the Notch3 interactome demonstrated that ubiquitin C was the molecular hub of the top functional network, suggesting the involvement of ubiquitination in modulating Notch3 signaling. Thereby, we focused on functional characterization of an E3 ubiquitin-protein ligase, WWP2, a top candidate in the Notch3 interactome list. Co-immunoprecipitation experiments showed that WWP2 interacted with N3-ICD but not with intracellular domains from other Notch receptors. Wild-type WWP2 but not ligase-deficient mutant WWP2 increases mono-ubiquitination of the membrane-tethered Notch3 fragment, therefore attenuating Notch3 pathway activity in cancer cells and leading to cell cycle arrest. The mono-ubiquitination by WWP2 may target an endosomal/lysosomal degradation fate for Notch3 as suggested by the fact that the process could be suppressed by the endosomal/lysosomal inhibitor. Analysis of The Cancer Genome Atlas dataset showed that the majority of ovarian carcinomas harbored homozygous or heterozygous deletions in WWP2 locus, and there was an inverse correlation in the expression levels between WWP2 and Notch3 in ovarian carcinomas. Furthermore, ectopic expression of WWP2 decreased tumor development in a mouse xenograft model and suppressed the Notch3-induced phenotypes including increase in cancer stem cell-like cell population and platinum resistance. Taken together, our results provide evidence that WWP2 serves as a tumor suppressor by negatively regulating Notch3 signaling in ovarian cancer. Show less
no PDF DOI: 10.1371/journal.pgen.1004751
WWP2
Yun-Il Lee, Daniel Giovinazzo, Ho Chul Kang +12 more · 2014 · Molecular & cellular proteomics : MCP · American Society for Biochemistry and Molecular Biology · added 2026-04-24
Nitric oxide (NO) mediates a substantial part of its physiologic functions via S-nitrosylation, however the cellular substrates for NO-mediated S-nitrosylation are largely unknown. Here we describe th Show more
Nitric oxide (NO) mediates a substantial part of its physiologic functions via S-nitrosylation, however the cellular substrates for NO-mediated S-nitrosylation are largely unknown. Here we describe the S-nitrosoproteome using a high-density protein microarray chip containing 16,368 unique human proteins. We identified 834 potentially S-nitrosylated human proteins. Using a unique and highly specific labeling and affinity capture of S-nitrosylated proteins, 138 cysteine residues on 131 peptides in 95 proteins were determined, defining critical sites of NO's actions. Of these cysteine residues 113 are novel sites of S-nitrosylation. A consensus sequence motif from these 834 proteins for S-nitrosylation was identified, suggesting that the residues flanking the S-nitrosylated cysteine are likely to be the critical determinant of whether the cysteine is S-nitrosylated. We identify eight ubiquitin E3 ligases, RNF10, RNF11, RNF41, RNF141, RNF181, RNF208, WWP2, and UBE3A, whose activities are modulated by S-nitrosylation, providing a unique regulatory mechanism of the ubiquitin proteasome system. These results define a new and extensive set of proteins that are susceptible to NO regulation via S-nitrosylation. Similar approaches could be used to identify other post-translational modification proteomes. Show less
no PDF DOI: 10.1074/mcp.M113.032235
WWP2
Chunxiao Xu, Rongpan Bai, DanDan Zhang +4 more · 2013 · PloS one · PLOS · added 2026-04-24
The apolipoprotein A5 (APOA5) gene -1131T>C (rs662799) has been suggested to be involved in the pathway of lipid homeostasis and the development of metabolic syndrome (MetS). However, the findings are Show more
The apolipoprotein A5 (APOA5) gene -1131T>C (rs662799) has been suggested to be involved in the pathway of lipid homeostasis and the development of metabolic syndrome (MetS). However, the findings are not consistent. To systematically evaluate the associations between -1131T>C polymorphism and fasting lipid parameters and the risk of MetS, we conducted a case-control study in a Chinese population and a meta-analysis. The findings from 1840 Chinese participants indicated that the C allele carriers had significantly higher fasting total cholesterol (TC), triglycerides (TG) and lower HDL-cholesterol (HDL-C) than the TT homozygotes carriers. The -1131C allele was also found to be significantly associated with increased risk of MetS (OR  =  1.40, 95% confidence interval (CI)  =  1.15, 1.69) compared to the TT homozygotes. In the meta-analysis of 51,868 participants from 46 East Asian studies, 26 European studies and 19 studies of other ethnic groups, the -1131C allele was associated with higher fasting TC (weighted mean difference (WMD)  =  0.08 mmol/L, 95% CI  =  0.05, 0.10, P = 1.74×10(-9)), TG (WMD  =  0.30 mmol/L, 95% CI  =  0.26, 0.33, P =  1.87×10(-55)), LDL-cholesterol (LDL-C) (WMD  =  0.04 mmol/L, 95% CI  =  0.02, 0.07, P = 0.002), and lower HDL-C (WMD  =  -0.05 mmol/L, 95% CI  =  -0.06,-0.04, P = 1.88×10(-21)), respectively. Based on 12 studies with 5,573 MetS cases and 8,290 controls from 5 East Asian studies, 5 European studies and 2 studies of other ethnic groups, the -1131C allele was associated with increased risk of MetS with an OR (95% CI)  =  1.33 (1.16, 1.53) in the overall population, 1.43 (1.29, 1.58) in East Asian and 1.30 (0.94, 1.78) in European populations. In conclusion, the -1131C allele may be associated with elevated levels of fasting TG, TC, LDL-C and decreased HDL-C, and increased risk of MetS, especially in East Asians. Show less
📄 PDF DOI: 10.1371/journal.pone.0056216
APOA5
W-M Yao, H-F Zhang, Z-Y Zhu +11 more · 2013 · Journal of human hypertension · Nature · added 2026-04-24
Elevated levels of circulating triglycerides and increased arterial stiffness are associated with cardiovascular disease. Numerous studies have reported an association between levels of circulating tr Show more
Elevated levels of circulating triglycerides and increased arterial stiffness are associated with cardiovascular disease. Numerous studies have reported an association between levels of circulating triglycerides and arterial stiffness. We used Mendelian randomization to test whether this association is causal. We investigated the association between circulating triglyceride levels, the apolipoprotein A-V (ApoA5) -1131T>C single nucleotide polymorphism and brachial-ankle pulse wave velocity (baPWV) by examining data from 4421 subjects aged 18-74 years who were recruited from the Chinese population. baPWV was significantly associated with the levels of circulating triglycerides after adjusting for age, sex, body mass index (BMI), systolic blood pressure, heart rate, waist-to-hip ratio, antihypertensive treatment and diabetes mellitus status. The -1131C allele was associated with a 5% (95% confidence interval 3-8%) increase in circulating triglycerides (adjusted for age, sex, BMI, waist-to-hip ratio, diabetes mellitus and antihypertensive treatment). Instrumental variable analysis showed that genetically elevated levels of circulating triglycerides were not associated with increased baPWV. These results do not support the hypothesis that levels of circulating triglycerides have a causal role in the development of arterial stiffness. Show less
no PDF DOI: 10.1038/jhh.2012.23
APOA5
Zaiming Tang, Mary Grace Lin, Timothy Richard Stowe +5 more · 2013 · Nature · Nature · added 2026-04-24
The primary cilium is a microtubule-based organelle that functions in sensory and signalling pathways. Defects in ciliogenesis can lead to a group of genetic syndromes known as ciliopathies. However, Show more
The primary cilium is a microtubule-based organelle that functions in sensory and signalling pathways. Defects in ciliogenesis can lead to a group of genetic syndromes known as ciliopathies. However, the regulatory mechanisms of primary ciliogenesis in normal and cancer cells are incompletely understood. Here we demonstrate that autophagic degradation of a ciliopathy protein, OFD1 (oral-facial-digital syndrome 1), at centriolar satellites promotes primary cilium biogenesis. Autophagy is a catabolic pathway in which cytosol, damaged organelles and protein aggregates are engulfed in autophagosomes and delivered to lysosomes for destruction. We show that the population of OFD1 at the centriolar satellites is rapidly degraded by autophagy upon serum starvation. In autophagy-deficient Atg5 or Atg3 null mouse embryonic fibroblasts, OFD1 accumulates at centriolar satellites, leading to fewer and shorter primary cilia and a defective recruitment of BBS4 (Bardet-Biedl syndrome 4) to cilia. These defects are fully rescued by OFD1 partial knockdown that reduces the population of OFD1 at centriolar satellites. More strikingly, OFD1 depletion at centriolar satellites promotes cilia formation in both cycling cells and transformed breast cancer MCF7 cells that normally do not form cilia. This work reveals that removal of OFD1 by autophagy at centriolar satellites represents a general mechanism to promote ciliogenesis in mammalian cells. These findings define a newly recognized role of autophagy in organelle biogenesis. Show less
📄 PDF DOI: 10.1038/nature12606
BBS4
Li Zhou, Meian He, Zengnan Mo +40 more · 2013 · PloS one · PLOS · added 2026-04-24
Plasma lipid levels are important risk factors for cardiovascular disease and are influenced by genetic and environmental factors. Recent genome wide association studies (GWAS) have identified several Show more
Plasma lipid levels are important risk factors for cardiovascular disease and are influenced by genetic and environmental factors. Recent genome wide association studies (GWAS) have identified several lipid-associated loci, but these loci have been identified primarily in European populations. In order to identify genetic markers for lipid levels in a Chinese population and analyze the heterogeneity between Europeans and Asians, especially Chinese, we performed a meta-analysis of two genome wide association studies on four common lipid traits including total cholesterol (TC), triglycerides (TG), low-density lipoprotein cholesterol (LDL) and high-density lipoprotein cholesterol (HDL) in a Han Chinese population totaling 3,451 healthy subjects. Replication was performed in an additional 8,830 subjects of Han Chinese ethnicity. We replicated eight loci associated with lipid levels previously reported in a European population. The loci genome wide significantly associated with TC were near DOCK7, HMGCR and ABO; those genome wide significantly associated with TG were near APOA1/C3/A4/A5 and LPL; those genome wide significantly associated with LDL were near HMGCR, ABO and TOMM40; and those genome wide significantly associated with HDL were near LPL, LIPC and CETP. In addition, an additive genotype score of eight SNPs representing the eight loci that were found to be associated with lipid levels was associated with higher TC, TG and LDL levels (P = 5.52 × 10(-16), 1.38 × 10(-6) and 5.59 × 10(-9), respectively). These findings suggest the cumulative effects of multiple genetic loci on plasma lipid levels. Comparisons with previous GWAS of lipids highlight heterogeneity in allele frequency and in effect size for some loci between Chinese and European populations. The results from our GWAS provided comprehensive and convincing evidence of the genetic determinants of plasma lipid levels in a Chinese population. Show less
📄 PDF DOI: 10.1371/journal.pone.0082420
DOCK7
Xinli Hu, Nannan Chang, Xuelian Wang +4 more · 2013 · Cell research · Nature · added 2026-04-24
no PDF DOI: 10.1038/cr.2013.141
DUSP6
Jingwen Zhu, Qi Sun, Geng Zong +8 more · 2013 · Journal of lipid research · added 2026-04-24
Little is known about the associations of FADS1 genetic variants with circulating levels of PUFA and lipids in Asian populations who have a different dietary pattern and dyslipidemia prevalence compar Show more
Little is known about the associations of FADS1 genetic variants with circulating levels of PUFA and lipids in Asian populations who have a different dietary pattern and dyslipidemia prevalence compared with Western populations. In a population-based sample of 3,210 unrelated Han Chinese living in Beijing and Shanghai, we examined a FADS1 genetic variant, rs174550, in relation to blood PUFA and lipid levels. C-allele of rs174550 was significantly associated with levels of erythrocyte PUFAs in upstream and downstream pathways of delta-5 desaturase (D5D) (P ≤ 0.003). Moreover, rs174550 C-allele was associated with a lower HDL cholesterol level (P = 0.02) in total population and a higher triglyceride level (P = 0.0002) in Beijing residents. Interestingly, erythrocyte levels of 18:2n-6 and 18:3n-3 modified the effect of rs174550 on HDL cholesterol level: stronger associations between rs174550 C-allele and lower HDL cholesterol levels were exhibited when erythrocyte 18:2n-6 or 18:3n-3 level was low (P for interaction = 0.02 and 0.03, respectively). These data suggested that FADS1 genetic variant was associated with circulating PUFA and lipid levels and that its effect on HDL cholesterol might depend on PUFA status in the Han Chinese population. Show less
no PDF DOI: 10.1194/jlr.P027516
FADS1
Nicolai El Hindy, Kathy Keyvani, Axel Pagenstecher +4 more · 2013 · Neuro-oncology · Oxford University Press · added 2026-04-24
Glioblastoma multiforme (GBM) is a highly aggressive brain tumor characterized by massive neovascularization, necrosis, and intense resistance to therapy. Deregulated Notch signaling has been implicat Show more
Glioblastoma multiforme (GBM) is a highly aggressive brain tumor characterized by massive neovascularization, necrosis, and intense resistance to therapy. Deregulated Notch signaling has been implicated in the formation and progression of different malignancies. The present study attempted to investigate the activation status of Dll4-Notch signaling in primary human GBM and its association with vascular and clinical parameters in patients. Major components of Dll4-Notch signaling were examined by real-time reverse-transcription polymerase chain reaction (PCR), Western blotting, and immunohistochemistry in GBM (n = 26) and control (n = 11) brain tissue. The vascular pattern (VP) and microvascular density (MVD) were analyzed after laminin immunostaining. O6-Methylguanine-methyltransferase (MGMT) promoter methylation in GBM samples was detected by methylation-specific PCR. The mRNA levels of Dll4, Jagged1, Notch1, Notch4, Hey1, Hey2, Hes1, and VEGF were 3.12-, 3.58-, 3.37-, 5.77-, 4.89-, 3.13-, 6.62-, and 32.57-fold elevated, respectively, in GBM samples, compared with the controls. Western blotting revealed a 4-, 3.7-, and 45.6-fold upregulation of Dll4, Notch1, and Hey1, respectively, accompanied by a downregulation of PTEN expression and an increase in the expression of p-Akt and VEGF. Immunostaining located the immunoreactivity of Dll4 and Notch1 in endothelial cells, microglia/macrophages, tumor cells, and astrocytes. Furthermore, the upregulation of Dll4-Notch signaling components was correlated to a low MVD and was potentially related to a classic VP, tumor edema, and MGMT promoter methylation. The upregulation of Dll4-Notch signaling components was found in a subset of GBM samples and was associated with some angiogenic and clinical parameters. These findings highlight this signaling pathway as a potential therapeutic target for patients with GBM who show an activation of Dll4-Notch signaling. Show less
no PDF DOI: 10.1093/neuonc/not071
HEY2
Chao You, Ibrahim Erol Sandalcioglu, Philipp Dammann +3 more · 2013 · Journal of cellular and molecular medicine · Blackwell Publishing · added 2026-04-24
CCM3, a product of the cerebral cavernous malformation 3 or programmed cell death 10 gene (CCM3/PDCD10), is broadly expressed throughout development in both vertebrates and invertebrates. Increasing e Show more
CCM3, a product of the cerebral cavernous malformation 3 or programmed cell death 10 gene (CCM3/PDCD10), is broadly expressed throughout development in both vertebrates and invertebrates. Increasing evidence indicates a crucial role of CCM3 in vascular development and in regulation of angiogenesis and apoptosis. Furthermore, loss of CCM3 causes inherited (familial) cerebral cavernous malformation (CCM), a common brain vascular anomaly involving aberrant angiogenesis. This study focused on signalling pathways underlying the angiogenic functions of CCM3. Silencing CCM3 by siRNA stimulated endothelial proliferation, migration and sprouting accompanied by significant downregulation of the core components of Notch signalling including DLL4, Notch4, HEY2 and HES1 and by activation of VEGF and Erk pathways. Treatment with recombinant DLL4 (rhDLL4) restored DLL4 expression and reversed CCM3-silence-mediated impairment of Notch signalling and reduced the ratio of VEGF-R2 to VEGF-R1 expression. Importantly, restoration of DLL4-Notch signalling entirely rescued the hyper-angiogenic phenotype induced by CCM3 silence. A concomitant loss of CCM3 and the core components of DLL4-Notch signalling were also demonstrated in CCM3-deficient endothelial cells derived from human CCM lesions (CCMEC) and in a CCM3 germline mutation carrier. This study defined DLL4 as a key downstream target of CCM3 in endothelial cells. CCM3/DLL4-Notch pathway serves as an important signalling for endothelial angiogenesis and is potentially implicated in the pathomechanism of human CCMs. Show less
📄 PDF DOI: 10.1111/jcmm.12022
HEY2
Hui Liang, Zhi Song, Xiong Deng +5 more · 2013 · Journal of molecular neuroscience : MN · Springer · added 2026-04-24
Variants in the leucine-rich repeat and lg domain containing nogo receptor-interacting protein 1 gene (LINGO1) have been identified to be associated with the increased risk of essential tremor (ET), e Show more
Variants in the leucine-rich repeat and lg domain containing nogo receptor-interacting protein 1 gene (LINGO1) have been identified to be associated with the increased risk of essential tremor (ET), especially among Caucasians. To explore whether the LINGO1 gene plays a role in ET susceptibility, we performed a systematic genetic analysis of the coding region in the LINGO1 gene. Four nucleotide variants have been genotyped, including three known variants (rs2271398, rs2271397, and rs3743481), and a novel G → C transition (ss491228439). Extended analysis showed no significant difference in genotypic and allelic distributions between 151 patients and 301 control subjects for these four variants (all P > 0.05). However, further sex-stratified analysis revealed that the C allele of rs2271397 and ss491228439 contributed the risk of ET in female (P = 0.017, OR = 2.139, 95 % CI 1.135 ~ 4.030 for rs2271397 and P = 0.038, OR = 1.812, 95 % CI 1.027 ~ 3.194 for ss491228439). Haplotype analysis indicated that A465-C474-C714 haplotype was significantly associated with increased risk of ET in female (P = 0.041, OR = 1.800, 95 % CI 1.020 ~ 3.178). Our results indicate that the LINGO1 variants are associated with ET in Chinese Han female patients. Show less
no PDF DOI: 10.1007/s12031-013-0029-1
LINGO1
Lifang Wu, Hanbei Chen, Yemin Zhu +7 more · 2013 · The international journal of biochemistry & cell biology · Elsevier · added 2026-04-24
The glucose-responsive transcription factor carbohydrate responsive element binding protein (ChREBP) plays an important role in regulating glucose metabolism in support of anabolic synthesis in both h Show more
The glucose-responsive transcription factor carbohydrate responsive element binding protein (ChREBP) plays an important role in regulating glucose metabolism in support of anabolic synthesis in both hepatocytes and cancer cells. In order to further investigate the molecular mechanism by which ChREBP regulates transcription, we used a proteomic approach to identify proteins interacting with ChREBP. We found several potential ChREBP-interacting partners, one of which, flightless I homolog (FLII) was verified to interact and co-localize with ChREBP in HCT116 colorectal cancer and HepG2 hepatocellular carcinoma cells. FLII is a member of the gelsolin superfamily of actin-remodeling proteins and can function as a transcriptional co-regulator. The C-terminal 227 amino acid region of ChREBP containing the DNA-binding domain interacted with FLII. Both the N-terminal leucine-rich repeat (LRR) domain and C-terminal gelsolin homolog domain (GLD) of FLII interacted and co-localized with ChREBP. ChREBP and FLII localized in both the cytoplasm and nucleus of cancer cells. Glucose increased expression and nuclear localization of ChREBP, and had minimal effect on the level and distribution of FLII. FLII knockdown using siRNAs increased mRNA and protein levels of ChREBP-activated genes and decreased transcription of ChREBP-repressed genes in cancer cells. Conversely, FLII overexpression negatively regulated ChREBP-mediated transcription in cancer cells. Our findings suggest that FLII is a component of the ChREBP transcriptional complex and negatively regulates ChREBP function in cancer cells. Show less
no PDF DOI: 10.1016/j.biocel.2013.09.004
MLXIPL
Marco Merlo, Gianfranco Sinagra, Elisa Carniel +10 more · 2013 · Clinical and translational science · Blackwell Publishing · added 2026-04-24
In dilated cardiomyopathy (DCM), the clinical and prognostic implications of rare variants in sarcomeric genes remain poorly understood. To address this question, we analyzed the outcome of rare sarco Show more
In dilated cardiomyopathy (DCM), the clinical and prognostic implications of rare variants in sarcomeric genes remain poorly understood. To address this question, we analyzed the outcome of rare sarcomeric gene variants in patients enrolled in our Familial Cardiomyopathy Registry. DCM families harboring rare sarcomeric variants in MYH6, MYH7, MYBPC3, TNNT2, and TTN were identified. Genotype-phenotype association analysis was performed, and long-term survival-free from death or heart transplant was compared between carriers and noncarriers. We found 24 rare variants (3 in MYH6, 3 in MYH7, 3 in MYBPC3, 2 in TNNT2, and 13 in TTN) affecting 52 subjects in 25 families. The phenotypes of variant carriers were severe (3 sudden deaths, 6 heart failure deaths, 8 heart transplants, 2 ventricular fibrillations). There was no difference in the overall long-term survival between carriers and the 33 noncarriers (p = 0.322). However after 50 years of age, the combined endpoint of death or transplant was decreased in carriers as compared to noncarriers (p = 0.026). Patients with DCM carrying rare variants in sarcomeric genes manifest a poorer prognosis as compared to noncarriers after the age of 50 years. These data further support the role of genetic testing in DCM for risk stratification. Show less
no PDF DOI: 10.1111/cts.12116
MYBPC3
Wen Liu, Wenling Liu, Dayi Hu +10 more · 2013 · The American journal of cardiology · Elsevier · added 2026-04-24
Hypertrophic cardiomyopathy (HC) is a hereditary heterogeneous cardiovascular disorder. Existing data have been of predominantly Caucasian samples, and a large study is needed in Chinese population. T Show more
Hypertrophic cardiomyopathy (HC) is a hereditary heterogeneous cardiovascular disorder. Existing data have been of predominantly Caucasian samples, and a large study is needed in Chinese population. The present study was intended to explore the genetic basis and clinical characteristics correlated with different genotypes in a large cohort of Chinese patients. Direct gene sequencing of β-myosin heavy chain (MYH7), myosin binding protein-C (MYBPC3), and cardiac troponin T (TNNT2) was performed in 136 unrelated Chinese HC patients. Clinical evaluations were conducted. In total, 32 mutations were identified in 36 patients (27%), including 10 novel ones. Distribution of mutations was 56% (MYBPC3), 31% (MYH7), and 13% (TNNT2), respectively. Double mutations were identified in 3% patients. The occurrence of HC-associated sarcomeric mutations was associated with an earlier age of onset, increased left ventricular hypertrophy, a higher incidence of syncope, previous family history, and sudden cardiac death. No statistical difference was identified in patients carrying MYBPC3 and MYH7 mutations with regard to clinical characteristics and outcomes. Patients with double mutations were associated with malignant progression in the study. In conclusion, MYBPC3 is the most predominant gene in HC. Multiple mutations are common in MYH7, MYBPC3, and TNNT2. The present study suggests a large diversity of HC and a prognostic role of genotype. Show less
no PDF DOI: 10.1016/j.amjcard.2013.04.021
MYBPC3
Hengbo Shi, Jun Luo, JiangJiang Zhu +6 more · 2013 · PPAR research · added 2026-04-24
To explore the function of PPAR γ in the goat mammary gland, we cloned the whole cDNA of the PPAR γ gene. Homology alignments revealed that the goat PPAR γ gene is conserved among goat, bovine, mouse, Show more
To explore the function of PPAR γ in the goat mammary gland, we cloned the whole cDNA of the PPAR γ gene. Homology alignments revealed that the goat PPAR γ gene is conserved among goat, bovine, mouse, and human. Luciferase assays revealed that rosiglitazone enhanced the activity of the PPAR γ response element (PPRE) in goat mammary epithelial cells (GMECs). After rosiglitazone (ROSI) treatment of GMECs, there was a significant (P < 0.05) increase in the expression of genes related to triacylglycerol synthesis and secretion: LPL, FASN, ACACA, PLIN3, FABP3, PLIN2, PNPLA2, NR1H3, SREBF1, and SCD. The decreases in expression observed after knockdown of PPAR γ relative to the control group (Ad-NC) averaged 65%, 52%, 67%, 55%, 65%, 58%, 85%, 43%, 50%, and 24% for SCD, DGAT1, AGPAT6, SREBF1, ACACA, FASN, FABP3, SCAP, ATGL, and PLIN3, respectively. These results provide direct evidence that PPAR γ plays a crucial role in regulating the triacylglycerol synthesis and secretion in goat mammary cells and underscore the functional importance of PPAR γ in mammary gland tissue during lactation. Show less
no PDF DOI: 10.1155/2013/310948
NR1H3
Wanqing Wen, Yoon-Shin Cho, Wei Zheng +61 more · 2012 · Nature genetics · Nature · added 2026-04-24
Multiple genetic loci associated with obesity or body mass index (BMI) have been identified through genome-wide association studies conducted predominantly in populations of European ancestry. We perf Show more
Multiple genetic loci associated with obesity or body mass index (BMI) have been identified through genome-wide association studies conducted predominantly in populations of European ancestry. We performed a meta-analysis of associations between BMI and approximately 2.4 million SNPs in 27,715 east Asians, which was followed by in silico and de novo replication studies in 37,691 and 17,642 additional east Asians, respectively. We identified ten BMI-associated loci at genome-wide significance (P < 5.0 × 10(-8)), including seven previously identified loci (FTO, SEC16B, MC4R, GIPR-QPCTL, ADCY3-DNAJC27, BDNF and MAP2K5) and three novel loci in or near the CDKAL1, PCSK1 and GP2 genes. Three additional loci nearly reached the genome-wide significance threshold, including two previously identified loci in the GNPDA2 and TFAP2B genes and a newly identified signal near PAX6, all of which were associated with BMI with P < 5.0 × 10(-7). Findings from this study may shed light on new pathways involved in obesity and demonstrate the value of conducting genetic studies in non-European populations. Show less
📄 PDF DOI: 10.1038/ng.1087
GIPR
Haijun Xiao, Liancheng Shan, Haiming Zhu +1 more · 2012 · Molecular medicine reports · added 2026-04-24
Osteoporosis is the most common and serious skeletal disorder among the elderly, characterized by a low bone mineral density (BMD). Low bone mass in the elderly is highly dependent on their peak bone Show more
Osteoporosis is the most common and serious skeletal disorder among the elderly, characterized by a low bone mineral density (BMD). Low bone mass in the elderly is highly dependent on their peak bone mass (PBM) as young adults. Circulating monocytes serve as early progenitors of osteoclasts and produce significant molecules for bone metabolism. An improved understanding of the biology and genetics of osteoclast differentiation at the pathway level is likely to be beneficial for the development of novel targeted approaches for osteoporosis. The objective of this study was to explore gene expression profiles comprehensively by grouping individual differentially expressed genes (DEGs) into gene sets and pathways using the graph clustering approach and Gene Ontology (GO) term enrichment analysis. The results indicated that the DEGs between high and low PBM samples were grouped into nine gene sets. The genes in clusters 1 and 8 (including GBP1, STAT1, CXCL10 and EIF2AK2) may be associated with osteoclast differentiation by the immune system response. The genes in clusters 2, 7 and 9 (including SOCS3, SOD2, ATF3, ADM EGR2 and BCL2A1) may be associated with osteoclast differentiation by responses to various stimuli. This study provides a number of candidate genes that warrant further investigation, including DDX60, HERC5, RSAD2, SIGLEC1, CMPK2, MX1, SEPING1, EPSTI1, C9orf72, PHLDA2, PFKFB3, PLEKHG2, ANKRD28, IL1RN and RNF19B. Show less
no PDF DOI: 10.3892/mmr.2012.1082
ANKRD28
Chuanwen Lu, Wenbin Zhu, Chwan-Li Shen +1 more · 2012 · PloS one · PLOS · added 2026-04-24
Beneficial effects of green tea polyphenols (GTP) against obesity have been reported, however, the mechanism of this protection is not clear. Therefore, the objective of this study was to identify GTP Show more
Beneficial effects of green tea polyphenols (GTP) against obesity have been reported, however, the mechanism of this protection is not clear. Therefore, the objective of this study was to identify GTP-targeted genes in obesity using the high-fat-diet-induced obese rat model. A total of three groups (n = 12/group) of Sprague Dawley (SD) female rats were tested, including the control group (rats fed with low-fat diet), the HF group (rats fed with high-fat diet), and the HF+GTP group (rats fed with high-fat diet and GTP in drinking water). The HF group increased body weight as compared to the control group. Supplementation of GTP in the drinking water in the HF+GTP group reduced body weight as compared to the HF group. RNA from liver samples was extracted for gene expression analysis. A total of eighty-four genes related to obesity were analyzed using PCR array. Compared to the rats in the control group, the rats in the HF group had the expression levels of 12 genes with significant changes, including 3 orexigenic genes (Agrp, Ghrl, and Nr3c1); 7 anorectic genes (Apoa4, Cntf, Ghr, IL-1β, Ins1, Lepr, and Sort); and 2 genes that relate to energy expenditure (Adcyap1r1 and Adrb1). Intriguingly, the HF+GTP group restored the expression levels of these genes in the high-fat-induced obese rats. The protein expression levels of IL-1β and IL-6 in the serum samples from the control, HF, and HF+GTP groups confirmed the results of gene expression. Furthermore, the protein expression levels of superoxide dismutase-1 (SOD1) and catechol-O-methyltransferase (COMT) also showed GTP-regulated protective changes in this obese rat model. Collectively, this study revealed the beneficial effects of GTP on body weight via regulating obesity-related genes, anti-inflammation, anti-oxidant capacity, and estrogen-related actions in high-fat-induced obese rats. Show less
📄 PDF DOI: 10.1371/journal.pone.0038332
APOA4
Wentao Liu, Bingya Liu, Qu Cai +3 more · 2012 · Clinica chimica acta; international journal of clinical chemistry · Elsevier · added 2026-04-24
Early diagnosis and treatment of gastric cancer patients is essential for improving prognosis. However, no available serum-based test provides sufficient sensitivity or specificity for widespread use. Show more
Early diagnosis and treatment of gastric cancer patients is essential for improving prognosis. However, no available serum-based test provides sufficient sensitivity or specificity for widespread use. Therefore, in this study we aimed to identify cancer biomarkers in human sera using 2-dimensional difference gel electrophoresis (2D-DIGE), and to characterize protein biomarkers with tandem mass spectrometry. We compared the serum proteomic profiles of 20 gastric cancer patients and 10 healthy volunteers. Serum samples were first chromatographed using an immunoaffinity high-performance liquid chromatography (HPLC) column to selectively remove albumin, immunoglobulins, transferrin, haptoglobin, and antitrypsin. Differential protein analysis was then performed using DIGE. Significantly increased and decreased protein spot features were excised, trypsin digested, and analyzed by tandem matrix-assisted laser desorption/ionization (MALDI) time of flight (TOF)/TOF and a linear trap quadrupole (LTQ) mass spectrometer. Seventeen protein spot features were significantly increased and 7 were significantly decreased in cancer serum samples compared to healthy controls. We identified 7 unique proteins that were upregulated, including plasminogen, apolipoprotein A-IV, Kininogen-1, complex-forming glycoprotein HC, complement component C4A, apolipoprotein J, and clusterin, and 5 that were decreased. These results suggest that the combination of multi-dimensional HPLC and 2D-DIGE provides a valuable tool for serum proteomics in gastric cancer. Show less
no PDF DOI: 10.1016/j.cca.2012.03.003
APOA4
Yan Ding, Ming An Zhu, Zhi Xiao Wang +3 more · 2012 · Journal of biomedicine & biotechnology · added 2026-04-24
Acute coronary syndromes (ACSs) are clinically cardiovascular events associated with dyslipidemia in common. Single nucleotide polymorphisms (SNPs) and haplotypes in the APOA1/C3/A5 gene cluster are a Show more
Acute coronary syndromes (ACSs) are clinically cardiovascular events associated with dyslipidemia in common. Single nucleotide polymorphisms (SNPs) and haplotypes in the APOA1/C3/A5 gene cluster are associated with diabetes and familial combined hyperlipidaemia (FCH). Little is known about whether the polymorphisms in these genes affect lipid homeostasis in patients with ACSs. The present paper aimed to examine these associations with 4 SNPs in the APOA1 -75G > A, the APOC3 -455T > C, and APOA5 -1131T > C, c.553G > T variant to ACSs in Chinese Han. Chinese Han of 229 patients with ACSs and 254 unrelated controls were analyzed. Four SNPs in APOA1/C3/A5 cluster were genotyped and lipid was determined. Our data show that minor allelic frequencies of APOC3 -455T > C, APOA5 -1131T > C, and c.553G > T polymorphisms in patients with ACSs were significantly higher than control group (P < 0.05). Furthermore, the 3 polymorphic sites were strongly of linkage disequilibrium, and minor alleles of 3 SNP sites had higher TG level than wild alleles (P < 0.05), APOC3 -455C and APOA5 c.553T allele carriers also had lower level of HDL-C. The minor alleles of APOC3 -455T > C, APOA5 -1131T > C, and c.553G > T polymorphisms are closely associated with ACSs. Show less
📄 PDF DOI: 10.1155/2012/509420
APOA5
Shaojing Li, Chuanhong Wu, Li Zhu +8 more · 2012 · Molecules (Basel, Switzerland) · MDPI · added 2026-04-24
Ischemic stroke is a devastating disease with a complex pathophysiology. Galangin is a natural flavonoid isolated from the rhizome of Alpina officinarum Hance, which has been widely used as an antioxi Show more
Ischemic stroke is a devastating disease with a complex pathophysiology. Galangin is a natural flavonoid isolated from the rhizome of Alpina officinarum Hance, which has been widely used as an antioxidant agent. However, its effects against ischemic stroke have not been reported and its related neuroprotective mechanism has not really been explored. In this study, neurological behavior, cerebral infarct volumes and the improvement of the regional cortical blood flow (rCBF) were used to evaluate the therapeutic effect of galangin in rats impaired by middle cerebral artery occlusion (MCAO)-induced focal cerebral ischemia. Furthermore, the determination of mitochondrial function and Western blot of apoptosis-related proteins were performed to interpret the neuroprotective mechanism of galangin. The results showed that galangin alleviated the neurologic impairments, reduced cerebral infarct at 24 h after MCAO and exerted a protective effect on the mitochondria with decreased production of mitochondrial reactive oxygen species (ROS). These effects were consistent with improvements in the membrane potential level (Dym), membrane fluidity, and degree of mitochondrial swelling in a dose-dependent manner. Moreover, galangin significantly improved the reduced rCBF after MCAO. Western blot analysis revealed that galangin also inhibited apoptosis in a dose-dependent manner concomitant with the up-regulation of Bcl-2 expression, down-regulation of Bax expression and the Bax/Bcl-2 ratio, a reduction in cytochrome c release from the mitochondria to the cytosol, the reduced expression of activated caspase-3 and the cleavage of poly(ADP-ribose) polymerase (PARP). All these data in this study demonstrated that galangin might have therapeutic potential for ischemic stroke and play its protective role through the improvement in rCBF, mitochondrial protection and inhibiting caspase-dependent mitochondrial cell death pathway for the first time. Show less
📄 PDF DOI: 10.3390/molecules171113403
DYM
Yingying Han, Yufang Pei, Yaozhong Liu +8 more · 2012 · Bone · Elsevier · added 2026-04-24
Compressive strength index (CSI) is a newly established index for predicting hip fracture, the most serious consequence of osteoporosis. Appendicular lean mass (ALM), which influences skeletal strengt Show more
Compressive strength index (CSI) is a newly established index for predicting hip fracture, the most serious consequence of osteoporosis. Appendicular lean mass (ALM), which influences skeletal strength of the lower limbs, is another trait associated with the risk of hip fracture. In this study, we performed a bivariate genome-wide association study (GWAS) to identify new candidate genes responsible for both CSI and ALM. In our discovery sample of 1627 unrelated Chinese subjects (802 males and 825 females), we scanned 909,509 SNPs using the Affymetrix Human Genome SNP 6.0 genotyping array. We successfully replicated our results in a sample of 2286 Caucasian subjects (558 males and 1728 females). The results indicated that five SNPs (rs174583, rs174577, rs174549, rs174548, rs7672337) in the FADS1, FADS2, and DCHS2 genes had significant bivariate associations with CSI and ALM in male subjects for both the GWAS discovery (with P<8.42×10(-6)) and the Caucasian sample (with P<0.07). We performed further replication analysis in a 2nd Caucasian sample with 501 Caucasian male subjects, using Affymetrix 500k arrays, and found that two of the above SNPs (rs174548 and rs174549, P=0.07) had bivariate associations with both CSI and ALM in males; the other 3 SNPs were not typed with the 500k array. The above findings suggest that the 3 genes, FADS1, FADS2, and DCHS2, containing these SNPs might play dual roles influencing both CSI and ALM in males. Our findings provide new insights into our understanding of the genetic basis of bone metabolism and the pathogenesis of osteoporosis. Show less
no PDF DOI: 10.1016/j.bone.2012.08.127
FADS1
Cheng Zhang, Xi Chen, Ren-Min Zhu +10 more · 2012 · Toxicology letters · Elsevier · added 2026-04-24
A link between fructose drinking and nonalcoholic fatty liver disease (NAFLD) has been demonstrated in human and rodent animals. The aim of the present study was to investigate whether endoplasmic ret Show more
A link between fructose drinking and nonalcoholic fatty liver disease (NAFLD) has been demonstrated in human and rodent animals. The aim of the present study was to investigate whether endoplasmic reticulum (ER) stress is mediated in the development of fructose-induced NAFLD. Female CD-1 mice were fed with 30% fructose solution for eight weeks. Hepatic lipid accumulation was assessed. Hepatic nuclear sterol regulatory element-binding protein (SREBP)-1c was measured. Results showed that hepatic SREBP-1c was activated in mice fed with fructose solution. Fatty acid synthase (fas) and acetyl-CoA carboxylase (acc), two target genes of SREBP-1c, were up-regulated. Fructose-evoked hepatic SREBP-1c activation seemed to be associated with insulin-induced gene (Insig)-1 depletion. An ER stress and unfolded protein response (UPR), as determined by an increased glucose-regulated protein (GRP78) expression and an increased eIF2α and PERK phosphorylation, were observed in liver of mice fed with fructose solution. Phenylbutyric acid (PBA), an ER chemical chaperone, not only significantly attenuated ER stress, but also alleviated fructose-induced hepatic Insig-1 depletion. PBA inhibited fructose-evoked hepatic SREBP-1c activation and the expression of SREBP-1c target genes, and protected against hepatic lipid accumulation. In conclusion, ER stress contributes, at least in part, to hepatic SREBP-1c activation and lipid accumulation in fructose-evoked NAFLD. Show less
no PDF DOI: 10.1016/j.toxlet.2012.06.002
MLXIPL
Wei Wang, Jun Luo, Yu Zhong +6 more · 2012 · Gene · Elsevier · added 2026-04-24
The liver X receptor α (LXRα) is a nuclear receptor of the transcription factor and is known to play a crucial role in lipid metabolism processes such as bile acid and fatty acid synthesis in humans a Show more
The liver X receptor α (LXRα) is a nuclear receptor of the transcription factor and is known to play a crucial role in lipid metabolism processes such as bile acid and fatty acid synthesis in humans and rodents. However, very little information is available on the role of LXRα in the regulation of fatty acid synthesis in the goat mammary gland. In this investigation, a cDNA was isolated from the mammary gland of Xinong Saanen dairy goats and designated as goat LXRα. RT-PCR and RACE gave rise to the full-length cDNA of LXRα, which was comprised of 1654 bp and characterized by an ORF of 1344 bp and 5'- and 3'-UTR regions of 150 and 160 bp, respectively. The deduced amino acid sequence encodes 477 amino acids with a predicted molecular weight (MW) of 50.4kDa and a theoretical isoelectric point (pI) of 6.3. Additionally, homology search and sequence multi-alignment indicated that the putative goat LXRα amino acid sequence is very similar to those of cattle, mice, rats, swine, and humans. Bioinformatic predictions demonstrated that the LXRα protein is located in the nucleus, containing characteristic signatures of a nuclear receptor with DNA-binding domain (DBD) and ligand-binding domain (LBD). Real-time quantitative PCR suggested that LXRα was predominantly expressed in the small intestine, liver, spleen and mammary gland. Treatment of goat mammary gland epithelial cells (GMEC) with different concentrations (i.e., 0.01, 0.1, 1 μM) of T0901317, a synthetic agonist of LXRα, resulted in elevated sterol regulatory element binding protein 1 (SREBP1) and fatty acid synthase (FASN) mRNA levels in response to LXRα activation. The association between different T0901317 concentrations and fatty acid composition in GMEC also was examined using gas chromatography (GC). The results showed that activation of LXRα significantly increased GMEC C18:1 and C18:2 contents, but did not affect levels of saturated fatty acids (SFA). These discoveries are consistent with the notion that LXRα plays a key role in controlling lipogenesis and regulating synthesis of unsaturated fatty acids (UFA) in the mammary gland of goats, which may prove useful in regulation of milk fat production. Show less
no PDF DOI: 10.1016/j.gene.2012.05.028
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Kunfeng Yan, Xiong Deng, Xuguang Zhai +7 more · 2012 · Molecular medicine (Cambridge, Mass.) · added 2026-04-24
Leptin, a key hormone in regulating energy homeostasis, is mainly produced by adipocytes. Cogent evidence indicates a unique role of leptin in the promotion of liver fibrosis. Hepatic stellate cell (H Show more
Leptin, a key hormone in regulating energy homeostasis, is mainly produced by adipocytes. Cogent evidence indicates a unique role of leptin in the promotion of liver fibrosis. Hepatic stellate cell (HSC) activation is a pivotal step in the process of liver fibrosis. Sterol regulatory element binding protein (SREBP)-1c, a critical transcription factor for lipid synthesis and adipocyte differentiation, functions as a key transcription factor in inhibition of HSC activation. SREBP-1c is highly expressed in quiescent HSCs and downregulated upon HSC activation. The aim of this study is to examine the effect of leptin on SREBP-1c gene expression in HSCs in vitro and in vivo and elucidate the underlying mechanisms. The results of the present study demonstrated that leptin strongly inhibited SREBP-1c expression in HSCs in vivo and in vitro. p38 MAPK was involved in leptin regulation of SREBP-1c expression in cultured HSCs. Leptin-induced activation of p38 MAPK led to the decreases in liver X receptor (LXR)-α protein level, activity and its binding to the SREBP-1c promoter, which caused the downregulation of SREBP-1c expression. Moreover, leptin inhibition of SREBP-1c expression via p38 MAPK increased the expression of alpha1(I) collagen in HSCs. Our results might provide new insights into the mechanisms of the unique role of leptin in the development of liver fibrosis and might have potential implications for clarifying the molecular mechanisms underlying liver fibrosis in diseases in which circulating leptin levels are elevated such as nonalcoholic steatohepatitis, type 2 diabetes mellitus and alcoholic cirrhosis. Show less
no PDF DOI: 10.2119/molmed.2011.00243
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