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TOPORS是一种与p53及拓扑异构酶I结合的环状结构域蛋白,在DNA损伤诱导的生长抑制过程中作为p53的共激活因子。

topors, a p53 and topoisomerase I-binding RING finger protein, is a coactivator of p53 in growth suppression induced by DNA damage.

作者信息

Lin Ling, Ozaki Toshinori, Takada Yuki, Kageyama Hajime, Nakamura Yoko, Hata Akira, Zhang Jian-Hua, Simonds William F, Nakagawara Akira, Koseki Haruhiko

机构信息

Department of Molecular Embryology, Graduate School of Medicine, Chiba University, 1-8-1 Inohana, Chuo-ku, Chiba 260-8670, Japan.

出版信息

Oncogene. 2005 May 12;24(21):3385-96. doi: 10.1038/sj.onc.1208554.

Abstract

The RING family zinc-finger protein topors (topoisomerase I-binding protein) binds not only topoisomerase I, but also p53 and the AAV-2 Rep78/68 proteins. topors maps to human chromosome 9p21, which contains candidate tumor suppressor genes implicated in small cell lung cancers. In this study, we isolated the murine counterpart of topors and investigated its impact on p53 function. The deduced amino-acid sequence of mouse topors exhibits extensive similarity to human topors. Overexpressed myc-tagged topors associates with and stabilizes p53, and enhances the p53-dependent transcriptional activities of p21(Waf1), MDM2 and Bax promoters and elevates endogenous p21(Waf1) mRNA levels. Overexpression of topors consequently results in the suppression of cell growth by cell cycle arrest and/or by the induction of apoptosis. Taken together, these studies identify topors as a positive regulator of p53. The expression of topors is induced by exposure to the genotoxic reagents cisplatin and camptothecin, a DNA topoisomerase I inhibitor. We therefore postulate that topors mediates p53-dependent cellular responses induced by DNA damage, suggesting its physiological role as a tumor suppressor.

摘要

RING家族锌指蛋白topors(拓扑异构酶I结合蛋白)不仅能与拓扑异构酶I结合,还能与p53以及腺相关病毒2型Rep78/68蛋白结合。topors定位于人类9号染色体p21区域,该区域含有与小细胞肺癌相关的候选抑癌基因。在本研究中,我们分离出了topors的小鼠对应物,并研究了其对p53功能的影响。推导得到的小鼠topors氨基酸序列与人类topors具有广泛的相似性。过表达的myc标签topors与p53结合并使其稳定,增强了p21(Waf1)、MDM2和Bax启动子的p53依赖性转录活性,并提高了内源性p21(Waf1)mRNA水平。因此,topors的过表达通过细胞周期阻滞和/或诱导凋亡导致细胞生长受到抑制。综上所述,这些研究确定topors是p53的正向调节因子。topors的表达可由遗传毒性试剂顺铂和喜树碱(一种DNA拓扑异构酶I抑制剂)诱导产生。因此,我们推测topors介导了由DNA损伤诱导的p53依赖性细胞反应,表明其作为肿瘤抑制因子的生理作用。

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