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姜黄素诱导的ErbB2降解:E3泛素连接酶CHIP的作用及姜黄素的迈克尔反应受体活性

Curcumin-induced degradation of ErbB2: A role for the E3 ubiquitin ligase CHIP and the Michael reaction acceptor activity of curcumin.

作者信息

Jung Yunjin, Xu Wanping, Kim Heejung, Ha Namchul, Neckers Len

机构信息

The Research Institute for Drug Development, College of Pharmacy, Pusan National University, Busan, 609-735, Korea.

出版信息

Biochim Biophys Acta. 2007 Mar;1773(3):383-90. doi: 10.1016/j.bbamcr.2006.11.004. Epub 2006 Nov 10.

Abstract

We investigated the molecular mechanism underlying curcumin depletion of ErbB2 protein. Curcumin induced ErbB2 ubiquitination but pretreatment with proteasome inhibitors neither prevented curcumin depletion of ErbB2 protein nor further accumulated ubiquitinated ErbB2. Curcumin increased association of endogenous and ectopically expressed CHIP, a chaperone-dependent ubiquitin ligase, with ErbB2. In COS7 cells cotransfected with ErbB2 and various CHIP plasmids followed by curcumin treatment, CHIP-H260Q (a mutant lacking ubiquitin ligase activity) promoted less curcumin-induced ErbB2 ubiquitination than did wild type CHIP, and CHIP-K30A (a mutant incapable of binding Hsp90 and Hsp70) neither associated with ErbB2 nor promoted its ubiquitination. ErbB2 mutants lacking the kinase domain failed to associate with CHIP and were completely resistant to ubiquitination and depletion induced by curcumin. Finally, curcumin's Michael reaction acceptor functionality was required for both covalent association of curcumin with ErbB2 and curcumin-mediated ErbB2 depletion. These data suggest (1) that CHIP-dependent ErbB2 ubiquitination is implicated in curcumin-stimulated ErbB2 depletion, and (2) that covalent modification of ErbB2 by curcumin is the proximal signal which initiates this process.

摘要

我们研究了姜黄素使ErbB2蛋白减少的分子机制。姜黄素诱导ErbB2泛素化,但用蛋白酶体抑制剂预处理既不能阻止姜黄素使ErbB2蛋白减少,也不能使泛素化的ErbB2进一步积累。姜黄素增加了内源性和异位表达的CHIP(一种伴侣依赖性泛素连接酶)与ErbB2的结合。在共转染了ErbB2和各种CHIP质粒并随后进行姜黄素处理的COS7细胞中,CHIP-H260Q(一种缺乏泛素连接酶活性的突变体)促进的姜黄素诱导的ErbB2泛素化比野生型CHIP少,而CHIP-K30A(一种不能结合Hsp90和Hsp70的突变体)既不与ErbB2结合也不促进其泛素化。缺乏激酶结构域的ErbB2突变体无法与CHIP结合,并且对姜黄素诱导的泛素化和减少完全具有抗性。最后,姜黄素的迈克尔反应受体功能对于姜黄素与ErbB2的共价结合以及姜黄素介导的ErbB2减少都是必需的。这些数据表明:(1)CHIP依赖性的ErbB2泛素化与姜黄素刺激的ErbB2减少有关;(2)姜黄素对ErbB2的共价修饰是启动这一过程的近端信号。

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