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格尔德霉素与热休克蛋白90的稳定且特异性结合会破坏完整细胞中糖皮质激素受体的功能。

Stable and specific binding of heat shock protein 90 by geldanamycin disrupts glucocorticoid receptor function in intact cells.

作者信息

Whitesell L, Cook P

机构信息

Department of Pediatrics, University of Arizona Health Sciences Center, Tucson 85724, USA.

出版信息

Mol Endocrinol. 1996 Jun;10(6):705-12. doi: 10.1210/mend.10.6.8776730.

DOI:10.1210/mend.10.6.8776730
PMID:8776730
Abstract

When isolated from cells grown under hormone-free conditions, the glucocorticoid receptor (GR) is known to exist as a large heteroprotein complex that contains, among its multiple components, the stress protein hsp90 (heat shock protein 90). To explore hsp90's role in mediating glucocorticoid hormone action, we have examined the effects of a selective hsp90-binding agent, geldanamycin (GA), or GR structure and function. Using a steroid-responsive reporter construct, we found that GA inhibited the dexamethasone-dependent transactivating activity of GR in transfected cells. At the molecular level, GA bound hsp90, but not GR, in a stable and specific manner in intact cells. GA treatment of cells did not inhibit coprecipitation of hsp90 or hsp70 with the GR but did result in a complete loss of the recently described p23 protein from GR immunoprecipitates. This drug-induced alteration in GR heteroprotein complex composition was associated with a rapid (15-30 min), noncompetitive loss of dexamethasone-binding activity. Longer exposures of cells to GA (2-8 h), resulted in a marked decline in the cellular level of GR protein. Pulse-chase data revealed that this decline resulted from a decrease in GR protein stability, not rate of synthesis. GA-induced declines in GR protein level were blocked by cotreatment of cells with lactacystin, a selective inhibitor of 20S proteasome activity, suggesting the possible involvement of the ubiquitin-proteasome pathway in mediating GA-induced decreases in GR protein abundance. Overall, these findings provide direct pharmacological evidence that hsp90 function is required to maintain both the hormone-binding activity and stability of the GR protein in intact cells and suggest that hsp90 function may provide a novel target for the modulation of steroid hormone signaling.

摘要

已知当从在无激素条件下生长的细胞中分离出来时,糖皮质激素受体(GR)以一种大型异源蛋白复合物的形式存在,该复合物在其多个组分中包含应激蛋白hsp90(热休克蛋白90)。为了探究hsp90在介导糖皮质激素作用中的作用,我们研究了一种选择性hsp90结合剂格尔德霉素(GA)对GR结构和功能的影响。使用一种类固醇反应性报告构建体,我们发现GA抑制了转染细胞中GR的地塞米松依赖性反式激活活性。在分子水平上,GA在完整细胞中以稳定且特异性的方式结合hsp90,而不结合GR。用GA处理细胞不会抑制hsp90或hsp70与GR的共沉淀,但确实导致GR免疫沉淀物中最近描述的p23蛋白完全丧失。这种药物诱导的GR异源蛋白复合物组成的改变与地塞米松结合活性的快速(15 - 30分钟)、非竞争性丧失有关。细胞长时间暴露于GA(2 - 8小时)会导致GR蛋白的细胞水平显著下降。脉冲追踪数据显示,这种下降是由于GR蛋白稳定性降低,而非合成速率降低所致。用20S蛋白酶体活性的选择性抑制剂乳胞素共同处理细胞可阻断GA诱导的GR蛋白水平下降,这表明泛素 - 蛋白酶体途径可能参与介导GA诱导的GR蛋白丰度降低。总体而言,这些发现提供了直接的药理学证据,表明hsp90功能对于维持完整细胞中GR蛋白的激素结合活性和稳定性是必需的,并表明hsp90功能可能为调节类固醇激素信号提供一个新的靶点。

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