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Jab1与Hdm2协同作用,诱导p53在细胞质中定位并降解。

Jab1 induces the cytoplasmic localization and degradation of p53 in coordination with Hdm2.

作者信息

Oh Wonkyung, Lee Eun-Woo, Sung Young Hoon, Yang Mi-Ran, Ghim Jaewang, Lee Han-Woong, Song Jaewhan

机构信息

Department of Food Science and Biotechnology, Faculty of Life Sciences and Technology, Sungkyunkwan University, Suwon 440-746.

School of Biological Sciences, Seoul National University, Seoul 151-742; Department of Biochemistry, Yonsei University, Seoul 120-749, Korea.

出版信息

J Biol Chem. 2006 Jun 23;281(25):17457-17465. doi: 10.1074/jbc.M601857200. Epub 2006 Apr 19.

DOI:10.1074/jbc.M601857200
PMID:16624822
Abstract

The biological mechanisms for maintaining the basal level of p53 in normal cells require nuclear exclusion and cytoplasmic degradation. Here, we showed that Jab1 facilitates p53 nuclear exclusion and its subsequent degradation in coordination with Hdm2. p53 was excluded from the nucleus in the presence of Jab1; this exclusion was prevented by leptomycin B treatment. Nuclear export of p53 was accompanied by a decrease in the levels of p53, as well as of its target proteins, which include p21 and Bax. Domain analyses of Jab1 showed that the N-terminal domain, 1-110, was capable of inducing cytoplasmic translocation of p53. Furthermore, 110-191 was required to facilitate the degradation of p53. Neither of these mutants incorporated into the CSN complex, indicating that Jab1 could affect the levels of p53 independent of intact CSN complex. Conversely, Jab1 was incapable of translocating and degrading two p53 mutants, W23S and 6KR, neither of which could be modified by Hdm2. Moreover, Jab1 did not affect the cellular localization or protein levels of p53 in p53 and Hdm2 double-null mouse embryo fibroblasts. We further observed that the ablation of endogenous Jab1 by small interfering RNA prevented Hdm2-mediated p53 nuclear exclusion. Under stressed conditions, which could sequester Hdm2 in its inactive state, Jab1 did not affect p53. Our studies implicate that Jab1 is required to remove post-translationally modified p53 and provide a novel target for p53-related cancer therapies.

摘要

正常细胞中维持p53基础水平的生物学机制需要核输出和细胞质降解。在此,我们发现Jab1与Hdm2协同作用,促进p53的核输出及其随后的降解。在Jab1存在的情况下,p53被排除在细胞核外;这种排除可被放线菌酮B处理所阻止。p53的核输出伴随着p53及其靶蛋白(包括p21和Bax)水平的降低。对Jab1的结构域分析表明,N端结构域1-110能够诱导p53的细胞质转位。此外,110-191结构域对于促进p53的降解是必需的。这两个突变体均未整合到CSN复合物中,表明Jab1可以独立于完整的CSN复合物影响p53的水平。相反,Jab1无法使两个p53突变体W23S和6KR转位和降解,这两个突变体均不能被Hdm2修饰。此外,Jab1不影响p53和Hdm2双缺失小鼠胚胎成纤维细胞中p53的细胞定位或蛋白水平。我们进一步观察到,通过小干扰RNA消除内源性Jab1可阻止Hdm2介导的p53核输出。在应激条件下,Hdm2可能处于无活性状态,Jab1不影响p53。我们的研究表明,Jab1是去除翻译后修饰的p53所必需的,并为p53相关癌症治疗提供了一个新靶点。

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