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人类多瘤病毒 JC 的 T 抗原通过促使 IRS-1 与 Rad51 在细胞核内相互作用,削弱了精确的 DNA 修复功能。

T-antigen of the human polyomavirus JC attenuates faithful DNA repair by forcing nuclear interaction between IRS-1 and Rad51.

作者信息

Trojanek Joanna, Croul Sidney, Ho Thu, Wang Jin Ying, Darbinyan Armine, Nowicki Michal, Del Valle Luis, Skorski Tomasz, Khalili Kamel, Reiss Krzysztof

机构信息

Center for Neurovirology and Cancer Biology, College of Science and Technology, Temple University, Biology Life Science Building, Philadelphia, Pennsylvania 19122, USA.

出版信息

J Cell Physiol. 2006 Jan;206(1):35-46. doi: 10.1002/jcp.20425.

Abstract

JC polyomavirus (JCV), which infects 90% of the human population, is detectable in human tumors. Its early protein, JCV T-antigen, transforms cells in vitro and is tumorigenic in experimental animals. Although T-antigen-mediated transformation involves genetic alterations of the affected cells, the mechanism underlying this genomic instability is not known. We show that JCV T-antigen inhibits homologous recombination DNA repair (HRR), which results in an accumulation of mutations. T-antigen does not operate directly but utilizes a cytosolic molecule, insulin receptor substrate 1 (IRS-1). Following T-antigen-mediated nuclear translocation, IRS-1 binds Rad51 at the site of damaged DNA. This T-antigen-mediated inhibition of HRR does not function in cells lacking IRS-1, and can be reproduced in the absence of T-antigen by IRS-1 with artificial nuclear localization signal. Our observations define a new mechanism by which viral protein utilizes cytosolic molecule to inhibit faithful DNA repair, and suggest how polyomaviruses could compromise stability of the genome. (c) 2005 Wiley-Liss, Inc.

摘要

JC多瘤病毒(JCV)可感染90%的人类,在人类肿瘤中可检测到。其早期蛋白JCV T抗原在体外可转化细胞,并在实验动物中具有致瘤性。尽管T抗原介导的转化涉及受影响细胞的基因改变,但这种基因组不稳定的潜在机制尚不清楚。我们发现JCV T抗原会抑制同源重组DNA修复(HRR),从而导致突变积累。T抗原并非直接发挥作用,而是利用一种胞质分子——胰岛素受体底物1(IRS-1)。在T抗原介导的核转位后,IRS-1在受损DNA位点与Rad51结合。这种T抗原介导的对HRR的抑制在缺乏IRS-1的细胞中不起作用,并且在没有T抗原的情况下,带有人工核定位信号的IRS-1也能重现这种抑制作用。我们的观察结果确定了一种新机制,即病毒蛋白利用胞质分子抑制准确的DNA修复,并揭示了多瘤病毒如何损害基因组稳定性。(c)2005威利-利斯出版公司

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