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热休克蛋白90(Hsp90)陪伴野生型p53肿瘤抑制蛋白。

Hsp90 chaperones wild-type p53 tumor suppressor protein.

作者信息

Walerych Dawid, Kudla Grzegorz, Gutkowska Malgorzata, Wawrzynow Bartosz, Muller Lin, King Frank W, Helwak Aleksandra, Boros Joanna, Zylicz Alicja, Zylicz Maciej

机构信息

International Institute of Molecular and Cell Biology in Warsaw, 02-109 Warsaw, Poland.

出版信息

J Biol Chem. 2004 Nov 19;279(47):48836-45. doi: 10.1074/jbc.M407601200. Epub 2004 Sep 9.

Abstract

Immortalized human fibroblasts were used to investigate the putative interactions of the Hsp90 molecular chaperone with the wild-type p53 tumor suppressor protein. We show that geldanamycin or radicicol, specific inhibitors of Hsp90, diminish specific wild-type p53 binding to the p21 promoter sequence. Consequently, these inhibitors decrease p21 mRNA levels, which lead to a reduction in cellular p21/Waf1 protein, known to induce cell cycle arrest. In control experiments, we show that neither geldanamycin nor radicicol affect p53 mRNA levels. A minor decrease in p53 protein level following the treatment of human fibroblasts with the inhibitors suggests the potential involvement of Hsp90 in the stabilization of wild-type p53. To support our in vivo findings, we used a reconstituted system with highly purified recombinant proteins to examine the effects of Hsp90 on wild-type p53 binding to the p21 promoter sequence. The human recombinant Hsp90 alpha-isoform as well as bovine brain Hsp90 were purified to homogeneity. Both of these molecular chaperones displayed ATPase activity and the ability to refold heat-inactivated luciferase in a geldanamycin- and radicicol-sensitive manner, suggesting that post-translational modifications are not involved in the modulation of Hsp90alpha activity. We show that the incubation of recombinant p53 at 37 degrees C decreases the level of its wild-type conformation and strongly inhibits the in vitro binding of p53 to the p21 promoter sequence. Interestingly, Hsp90 in an ATP-dependent manner can positively modulate p53 DNA binding after incubation at physiological temperature of 37 degrees C. Other recombinant human chaperones from Hsp70 and Hsp40 families were not able to efficiently substitute Hsp90 in this reaction. Consistent with our in vivo results, geldanamycin can suppress Hsp90 ability to regulate in vitro p53 DNA binding to the promoter sequence. In summary, the results presented in this article state that chaperone activity of Hsp90 is important for the transcriptional activity of genotypically wild-type p53.

摘要

永生化人成纤维细胞被用于研究热休克蛋白90(Hsp90)分子伴侣与野生型p53肿瘤抑制蛋白之间的假定相互作用。我们发现,Hsp90的特异性抑制剂格尔德霉素或radicicol可减少野生型p53与p21启动子序列的特异性结合。因此,这些抑制剂会降低p21 mRNA水平,进而导致细胞中p21/Waf1蛋白减少,而该蛋白已知可诱导细胞周期停滞。在对照实验中,我们发现格尔德霉素和radicicol均不影响p53 mRNA水平。用这些抑制剂处理人成纤维细胞后,p53蛋白水平略有下降,这表明Hsp90可能参与了野生型p53的稳定性维持。为支持我们的体内研究结果,我们使用了一个含有高度纯化重组蛋白的重组系统,以检测Hsp90对野生型p53与p21启动子序列结合的影响。人重组Hsp90α异构体以及牛脑Hsp90均被纯化至同质。这两种分子伴侣均表现出ATP酶活性,并能够以对格尔德霉素和radicicol敏感的方式重新折叠热失活的荧光素酶,这表明翻译后修饰不参与Hsp90α活性的调节。我们发现,重组p53在37℃孵育会降低其野生型构象水平,并强烈抑制p53在体外与p21启动子序列的结合。有趣的是,Hsp90在生理温度37℃孵育后,能以ATP依赖的方式正向调节p53与DNA的结合。来自Hsp70和Hsp40家族的其他重组人伴侣蛋白在该反应中无法有效替代Hsp90。与我们的体内结果一致,格尔德霉素可抑制Hsp90调节体外p53与启动子序列DNA结合的能力。总之,本文的结果表明,Hsp90的伴侣活性对基因型野生型p53的转录活性很重要。

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