👤 Lijian Gao

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Also published as: Aidi Gao, Aili Gao, An-Bo Gao, Anbo Gao, Bangjun Gao, Bao-Qin Gao, BaoXi Gao, Bei Gao, Beibei Gao, Beixue Gao, Bin Gao, Bing Gao, Bizhen Gao, Bo Gao, Bowen Gao, C L Gao, Canran Gao, Chan Gao, Chanchan Gao, Chang Gao, Changsong Gao, Changyue Gao, Chao Gao, Chen Gao, Chenbo Gao, Chenghai Gao, Chengjiang Gao, Chenguang Gao, Chenxin Gao, Chuan Gao, Chuanyu Gao, Chun Gao, Chun-Lin Gao, Chundi Gao, Chunqi Gao, Chuxuan Gao, Cong Gao, Dajun Gao, Daming Gao, Dandan Gao, Darui Gao, Dejiao Gao, Dejun Gao, Dexiang Gao, Di Gao, Dongdong Gao, Dongyan Gao, Erhe Gao, Fan Gao, Fang Gao, Fangya Gao, Fangyuan Gao, Fei Gao, Feifei Gao, Fen Gao, Feng Gao, Fenglei Gao, Fengshan Gao, Fengxiao Gao, Fu-Li Gao, Fujia Gao, Furong Gao, Fusheng Gao, Gan Gao, Ge Gao, Guangyao Gao, Guangyu Gao, Guimin Gao, Guizhou Gao, Guo-yi Gao, Guofeng Gao, Guoquan Gao, Guosheng Gao, H Gao, Haidong Gao, Haihe Gao, Haina Gao, Hainv Gao, Han Gao, Hanhan Gao, Hanlin Gao, Hanqi Gao, Hanyu Gao, Hao Gao, He Gao, 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Gao, Xinyu Gao, Xinyuan Gao, Xiong Gao, Xiufei Gao, Xixi Gao, Xu Gao, Xuan Gao, Xue Gao, Xue-Juan Gao, Xue-Li Gao, Xue-Mei Gao, Xuechang Gao, Xuelian Gao, Xueliang Gao, Xuwen Gao, Xuzhu Gao, Y Gao, Y N Gao, Y-P Gao, Ya Gao, Ya-Qian Gao, Ya-Tong Gao, Yahan Gao, Yahui Gao, Yamei Gao, Yan Gao, Yan-ling Gao, Yanan Gao, Yanfeng Gao, Yang Gao, Yangjuan Gao, Yanhong Gao, Yanhui Gao, Yanmin Gao, Yanpeng Gao, Yanqing Gao, Yanxia Gao, Yanyan Gao, Yao Gao, Yawen Gao, Yi Gao, Yibo Gao, Yide Gao, Yifan Gao, Yifang Gao, Yifei Gao, Yihong Gao, Yijian Gao, Yijun Gao, Ying Gao, Yingwei Gao, Yinyan Gao, Yiqing Gao, Yong Gao, Yongcai Gao, Youhe Gao, Yu Gao, Yu-Fang Gao, Yu-Hua Gao, Yu-Hui Gao, Yu-Liang Gao, Yu-Tang Gao, Yuan Gao, Yuang Gao, Yuchen Gao, Yue Gao, Yue-Ming Gao, Yuehong Gao, Yuelan Gao, Yufang Gao, Yujing Gao, Yun Gao, Yun-Feng Gao, Yunan Gao, Yundi Gao, Yundong Gao, Yunkai Gao, Yunling Gao, Yuntao Gao, Yuping Gao, Yuren Gao, Yuxia Gao, Yuzhi Gao, Zachary Gao, Zengqiang Gao, Zhan Gao, Zhangshan Gao, Zhangwei Gao, Zhanhua Gao, Zhaoyu Gao, Zhenfang Gao, Zheng Gao, Zhenyu Gao, Zhenzhen Gao, Zhi Qiang Gao, Zhi-Qiang Gao, Zhibo Gao, Zhiguang Gao, Zhijie Gao, Zhiqi Gao, Zhiqing Gao, Zhiwei Gao, Zhong-Hua Gao, Zhongming Gao, Zhuan Gao, Zhuo Gao, Zhuwei Gao, Ziting Gao, Zitong Gao, Ziwei Gao, Zixuan Gao
articles
Yu Gao, Yi Ding, Prim B Singh +1 more · 2002 · Acta crystallographica. Section D, Biological crystallography · added 2026-04-24
Members of the heterochromatin protein 1 (HP1) class of non-histone chromosomal proteins are components of heterochromatin and are involved in the epigenetic regulation of the genome. HP1 proteins are Show more
Members of the heterochromatin protein 1 (HP1) class of non-histone chromosomal proteins are components of heterochromatin and are involved in the epigenetic regulation of the genome. HP1 proteins are modular and consist of two sequence-related domains called the chromodomain (CD) and the chromo shadow domain (CSD). In order to investigate the role of the murine HP1-like protein M31 in heterochromatin formation and gene silencing, recombinant CSD was overexpressed in Escherichia coli and crystallized using the hanging-drop vapour-diffusion method with PEG 4000 as precipitant. Diffraction data to 2.9 A were collected from a native crystal belonging to space group C222(1), with unit-cell parameters a = 60.0, b = 95.6, c = 91.7 A, alpha = beta = gamma = 90 degrees. Show less
no PDF DOI: 10.1107/s0907444902005863
CBX1
Ying Cai, Ying Gao, Qi Sheng +5 more · 2002 · Molecular reproduction and development · Wiley · added 2026-04-24
A 1933 bp cDNA fragment, coding a truncated testis-specific novel nucleoporin, was isolated from a human testis lambdaZAPII cDNA library, designated as BS-63 and assigned GenBank accession number: U64 Show more
A 1933 bp cDNA fragment, coding a truncated testis-specific novel nucleoporin, was isolated from a human testis lambdaZAPII cDNA library, designated as BS-63 and assigned GenBank accession number: U64675. By applying the methods of rapid amplification of cDNA ends (5' RACE) and PCR, a full-length BS-63 cDNA composed of 5475 bp was obtained. BS-63 cDNA contained an open reading frame consisting of 1765 codons and XFXFG or GLFG repetitive sequence motifs. These repetitive motifs are structural characteristic of nucleoporins. BS-63 cDNA has high homology with Nup358/Ran BP2. A 1599 bp fragment, corresponding to the C-terminus of BS-63 cDNA, was prepared and expressed in E. coli BL21(DE3). The recombinant product was purified by affinity chromatography and SDS-PAGE and polyclonal antibodies raised. In rat testis section, the BS-63 protein was localized at the sites of nuclear pores in spermatids by immuno-gold transmission electron microscopy and on the nuclear membrane of Triton X-treated sperm by colloidal silver immuno-gold scanning electron microscopy. The recombinant BS-63 protein can be phosphorylated in vitro with PKC and p34(cdc2). A yeast two-hybrid system was used to screen a mouse testis cDNA library to identify proteins capable of interacting with BS-63. Using the 1.6 kb cDNA fragment as bait, the following interacting proteins were identified: Ran, transportin (karyopherin beta2), two proteins related to the nucleocytoplasmic transporter and aF10 protein. The latter protein is a putative transcriptor containing a cysteine-rich N-terminus, a LAP/PHD finger, a leucine zipper domain and a glutamine-rich C-terminus. Also it is highly expressed in murine testis and is located in the cell nucleus and cytoplasm. The interaction of BS-63 with aF10 (696-1001aa) was validated by surface plasmon resonance and by affinity precipitation combined with Western blot. aF10 (696-1001aa) interacted in vitro with BS-63 extracted from rat testis germ cells. It is hypothesized that BS-63 is a testis-specific nucleoporin and possibly acts as a docking site and a cotransporter of Ran and transportin. The complex performs the task of a carrier system in transporting aF10 into the nucleus of germ cells during spermiogenesis. Show less
no PDF DOI: 10.1002/mrd.1139
MLLT10
M L Katz, H Shibuya, P C Liu +3 more · 1999 · Journal of neuroscience research · added 2026-04-24
The human hereditary ceroid-lipofuscinoses are a group of autosomal recessively inherited diseases characterized by massive accumulations of autofluorescent lysosomal storage bodies in the cells of ma Show more
The human hereditary ceroid-lipofuscinoses are a group of autosomal recessively inherited diseases characterized by massive accumulations of autofluorescent lysosomal storage bodies in the cells of many tissues and by neuronal degeneration throughout the central nervous system. There are a number of clinically and genetically distinct forms of ceroid-lipofuscinosis, the most common of which is the juvenile type, also known as Batten disease and CLN3. To study the mechanisms that lead to pathology in CLN3 and to evaluate potential therapies, a mouse model has been generated by targeted disruption of the mouse ortholog of the CLN3 gene (Cln3). As in affected humans, mice homozygous for the disrupted Cln3 allele show accumulation of autofluorescent storage material in neurons and other cell types. The storage material consists of membrane-bounded intracellular inclusions with ultrastructural features typical of the ceroid-lipofuscinoses. The accumulation of this storage material validates the Cln3 knockout mice as a model for the human disorder. Show less
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CLN3
M L Katz, C L Gao, M Prabhakaram +3 more · 1997 · Investigative ophthalmology & visual science · added 2026-04-24
Batten disease, also known as juvenile ceroid-lipofuscinosis and CLN3, is an autosomal recessively inherited disorder that results in blindness due to retinal degeneration. The CLN3 gene has been iden Show more
Batten disease, also known as juvenile ceroid-lipofuscinosis and CLN3, is an autosomal recessively inherited disorder that results in blindness due to retinal degeneration. The CLN3 gene has been identified, but the function of the protein that this gene encodes is unknown. Experiments were conducted to determine where the CLN3 protein is localized in the mouse retina. Localization should provide a clue in evaluating potential functions of this protein. Using oligonucleotide primers based on the reported human CLN3 cDNA sequence, the mouse cDNA nucleotide sequence was determined from products of the reverse transcriptase-polymerase chain reaction and 3' rapid amplification of cDNA ends. A synthetic 20-amino-acid peptide corresponding to an internal hydrophilic region of the predicted amino acid sequence of the mouse CLN3 protein was used to immunize rabbits. The resulting antiserum was used in immunoblot analysis of mouse retina homogenates and in electron microscopic immunocytochemical labeling of mouse retina sections. The peptide antibody labeled a single protein band of approximately 50 kDa on immunoblots of mouse retina homogenates. No labeling was detected with homogenates from human retinas. The antibody specifically labeled mitochondria of Müller cells and inner retinal neurons. Little labeling was observed in mitochondria of the photoreceptor cells. Mitochondria of other cell types, including the retinal pigment epithelium and choroidal cells, were not labeled. The retinal CLN3 protein appears to be localized almost exclusively in the mitochondria, but was detected only in certain cell types. Batten disease is characterized by massive lysosomal accumulations of a small inner mitochondrial membrane protein (subunit c of ATP synthase). The mitochondrial localization of the CLN3 protein suggests that it may play a role in the normal processing of subunit c. Show less
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CLN3