👤 Lei Jin

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393
Articles
278
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Also published as: Aoming Jin, Bao-Yun Jin, Bihui Jin, Bo Jin, Byungchang Jin, Cai-Cai Jin, Caixia Jin, Can Jin, Chan-Chan Jin, Chao Jin, Chaofan Jin, Chen Jin, Cheng Jun Jin, Cheng-Hao Jin, Chengfang Jin, Chenghao Jin, Chengri Jin, Chong-Yao Jin, Chunjia Jin, Dan Jin, Danqun Jin, Dapeng Jin, Daqing Jin, Dong-Kyu Jin, E Jin, Ethan Jin, Feng Jin, Fuhua Jin, Fulai Jin, Gang Jin, Ge Jin, Guangfu Jin, Gui-Shan Jin, Guo Hong Jin, Guohua Jin, Guojiang Jin, Guorong Jin, Hai Jin, Haichao Jin, Haihao Jin, Hailing Jin, Haixia Jin, Haiyong Jin, Han Jin, Han-Yan Jin, Hee Kyung Jin, Heejin Jin, Hengwei Jin, Heyue Jin, Hong Jin, Hongchuan Jin, Hongjiang Jin, Hongliang Jin, Honglin Jin, Hongtao Jin, Hongting Jin, Hu Jin, Hua Jin, Hui Jin, Hui Min Jin, Huifeng Jin, Huimin Jin, Huiying Jin, Huizi Jin, Hye-Yeong Jin, Hyo-Eon Jin, Hyun-Seok Jin, Ingnyol Jin, Isom Jin, Jian Jin, Jiangbo Jin, Jiayi Jin, Jie-Yuan Jin, Jiewen Jin, Jin Jin, Jing Jin, Jing-Jie Jin, Jing-Lu Jin, Jinghua Jin, Jingjing Jin, Jingjun Jin, Jinzhen Jin, Joseph Wuxun Jin, Juan Jin, Jun Jin, Junfei Jin, Junhua Jin, Junxue Jin, Junyan Jin, Kaiyu Jin, Kehan Jin, Kimberly Jin, Kunlin Jin, Kunying Jin, Kyubok Jin, Lee-Way Jin, Leigang Jin, Leiming Jin, Li Jin, Li-Hua Jin, Li-Ping Jin, Liang Jin, Liang-Yun Jin, Liliang Jin, Liming Jin, Lina Jin, Ling Jin, Lingling Jin, Lingwei Jin, Lingyan Jin, Luheng Jin, Mei Jin, Mei Ling Jin, Mei-Hua Jin, Meilan Jin, Meixian Jin, Meixiang Jin, Meng Jin, Menglong Jin, Mengmeng Jin, Mengying Jin, Mengyun Jin, Min Jin, Ming Jin, Ming-Zhu Jin, Mingjuan Jin, Mingming Jin, Mingxin Jin, Minli Jin, Mirim Jin, Mu Jin, Naifu Jin, Nianqiang Jin, Nuo Jin, Peng Jin, Pengzhen Jin, Ping Jin, Qianheng Jin, Qiaomei Jin, Qichuan Jin, Qinchun Jin, Qing Jin, Qinghao Jin, Qinghua Jin, Qinqin Jin, Quan Jin, Quan-Wen Jin, R Jin, Rong Jin, Rongyao Jin, Ru Jin, Rui Jin, Runsen Jin, Seon-Pil Jin, Sha Jin, Shan Jin, Shaobo Jin, Sheng Chih Jin, Sheng Jin, Sheng-Wei Jin, Shengyang Jin, Shi Jin, Shikai Jin, Shouheng Jin, Shu-Xu Jin, Shuyu Jin, Si Jin, Si-Jia Jin, Siqi Jin, So Hee Jin, Sungho Jin, T Jin, Taian Jin, Tian-Ru Jin, Tian-Yang Jin, Tianbo Jin, Tianru Jin, Tianyu Jin, Tong Jin, Wei Jin, Wei-Guo Jin, Wei-Lin Jin, Wei-Na Jin, Weibo Jin, Weifang Jin, Weiguo Jin, Wen Jin, Wenjiao Jin, Wenrui Jin, Wenyi Jin, Will H Jin, X Jin, Xi Jin, Xianqing Jin, Xiao-hua Jin, Xiaohong Jin, Xiaohu Jin, Xiaolan Jin, Xiaolin Jin, Xiaoqiang Jin, Xiaoyan Jin, Xiaozhuang Jin, Xin Jin, Xing Jin, Xinyi Jin, Xu Jin, Xuanxuan Jin, Xue-jun Jin, Xueling Jin, Xueting Jin, Y Jin, Ya Jin, Ya Li Jin, Yali Jin, Yan Jin, Yanfei Jin, Yanfeng Jin, Yang Jin, Yanlu Jin, Yao Jin, Yaping Jin, Ye Jin, Yi Jin, Yi-Si Jin, Yibo Jin, Yiguang Jin, Yihan Jin, Yiliang Jin, Yin Jin, Ying Jin, Yinglan Jin, Yingying Jin, Yinji Jin, Yinshan Jin, Yinsheng Jin, Yiqing Jin, Yiting Jin, Yizhen Jin, Yong-Xun Jin, Yongjia Jin, Yongling Jin, Yongmei Jin, Yongzeng Jin, Young-Woo Jin, Yu Jin, Yuan Jin, Yuanchao Jin, Yuanxiang Jin, Yuanzhe Jin, Yue Jin, Yuefei Jin, Yufan Jin, Yufeng Jin, Yulan Jin, Yunjung Jin, Yutong Jin, Yuxin Jin, Ze Jin, Zeng Jin, Zhao-Kai Jin, Zhe Jin, Zhehui Jin, Zhen Jin, Zheng Gen Jin, Zheng-Gen Jin, Zhengyu Jin, Zhenxiao Jin, Zhicheng Jin, Zhiyuan Jin, Zhongmin Jin, Zhouxiang Jin, Zi-Bing Jin, Zihang Jin, Ziliang Jin, Ziwei Jin, Ziyang Jin, Zuolin Jin
articles
Hui Ming Xu, Bing Liao, Qian Jun Zhang +7 more · 2004 · The Journal of biological chemistry · American Society for Biochemistry and Molecular Biology · added 2026-04-24
The POU transcription factor Oct-4 is a master regulator affecting the fate of pluripotent embryonic stem cells. However, the precise mechanisms by which the activation and expression of Oct-4 are reg Show more
The POU transcription factor Oct-4 is a master regulator affecting the fate of pluripotent embryonic stem cells. However, the precise mechanisms by which the activation and expression of Oct-4 are regulated still remain to be elucidated. We describe here a novel murine ubiquitin ligase, Wwp2, that specifically interacts with Oct-4 and promotes its ubiquitination both in vivo and in vitro. Remarkably, the expression of a catalytically inactive point mutant of Wwp2 abolishes Oct-4 ubiquitination. Moreover, Wwp2 promotes Oct-4 degradation in the presence of overexpressed ubiquitin. The degradation is blocked by treatment with proteasome inhibitor. Fusion of a single ubiquitin to Oct-4 inactivates its transcriptional activity in a heterologous Oct-4-driven reporter system. Furthermore, overexpression of Wwp2 in embryonic stem cells significantly reduces the Oct-4-transcriptional activities. Collectively, we demonstrate for the first time that Oct-4 can be post-translationally modified by ubiquitination and that this modification dramatically suppresses its transcriptional activity. These results reveal that the functional status of Oct-4, in addition to its expression level, dictates its transcriptional activity, and the results open up a new avenue to understand how Oct-4 defines the fate of embryonic stem cells. Show less
no PDF DOI: 10.1074/jbc.M400516200
WWP2
Li-Hua Jin, Qiu-Jie Shao, Wen Luo +3 more · 2003 · International journal of cancer · Wiley · added 2026-04-24
Axin is a recently identified tumor suppressor that plays an important role in liver and colon cancers. To gain further insights into the structure and function of Axin in controlling cell growth, we Show more
Axin is a recently identified tumor suppressor that plays an important role in liver and colon cancers. To gain further insights into the structure and function of Axin in controlling cell growth, we analyzed 54 colorectal cancer tissues for mutations in AXIN1 gene. We employed PCR amplification with 23 sets of primers against introns that encompassed the whole coding region of AXIN1 followed by single-strand conformation polymorphism (SSCP) analysis. After subcloning and sequencing analysis of the reamplified DNA from the aberrant bands, we found, in addition to 3 silent mutations, 6 missense point mutations in different functionally important regions. The missense mutation rate is hence 11%, suggesting that Axin deficiency may contribute to the onset of colorectal tumorigenesis. Show less
no PDF DOI: 10.1002/ijc.11435
AXIN1
Quan-Wen Jin, Dannel McCollum · 2003 · Eukaryotic cell · added 2026-04-24
Cytokinesis in the fission yeast Schizosaccharomyces pombe is regulated by a signaling pathway termed the septation initiation network (SIN). The SIN is essential for initiation of actomyosin ring con Show more
Cytokinesis in the fission yeast Schizosaccharomyces pombe is regulated by a signaling pathway termed the septation initiation network (SIN). The SIN is essential for initiation of actomyosin ring constriction and septum formation. In a screen to search for mutations that can rescue the sid2-250 SIN mutant, we obtained scw1-18. Both the scw1-18 mutant and the scw1 deletion mutant (scw1Delta mutant), have defects in cell separation. Both the scw1-18 and scw1Delta mutations rescue the growth defects of not just the sid2-250 mutant but also the other temperature-sensitive SIN mutants. Other cytokinesis mutants, such as those defective for actomyosin ring formation, are not rescued by scw1Delta. scw1Delta does not seem to rescue the SIN by restoring SIN signaling defects. However, scw1Delta may function downstream of the SIN to promote septum formation, since scw1Delta can rescue the septum formation defects of the cps1-191beta-1,3-glucan synthase mutant, which is required for synthesis of the primary septum. Show less
no PDF DOI: 10.1128/EC.2.3.510-520.2003
CPS1