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热休克蛋白90结合剂格尔德霉素改变孕酮受体的结构与功能。

Progesterone receptor structure and function altered by geldanamycin, an hsp90-binding agent.

作者信息

Smith D F, Whitesell L, Nair S C, Chen S, Prapapanich V, Rimerman R A

机构信息

Department of Pharmacology, University of Nebraska Medical Center, Omaha 68198, USA.

出版信息

Mol Cell Biol. 1995 Dec;15(12):6804-12. doi: 10.1128/MCB.15.12.6804.

Abstract

The assembly of progesterone receptor (PR) heterocomplexes in vitro involves at least eight components of the molecular chaperone machinery, and as earlier reports have shown, these proteins exhibit complex, dynamic, but ordered, interactions with one another and PR. Using the selective hsp90 binding agent geldanamycin (GA), we have found that PR assembly in vitro can be arrested at a previously observed intermediate assembly step. Like mature PR complexes, the intermediate complexes contain hsp90, but they differ from mature complexes by the presence of hsp70, p60, and p48 and the absence of immunophilins and p23. Arrest of PR assembly is likely due to GA's ability to directly block binding of p23 to hsp90. An important functional consequence of GA-mediated assembly arrest in vitro is the inability of the resulting PR complexes to bind progesterone, despite the presence of hsp90 in the receptor complexes. The biological significance of the in vitro observations is demonstrated by GA's ability to (i) rapidly block PR's hormone binding capacity in intact cells and (ii) alter the composition of COS cell PR complexes in a manner similar to that observed during in vitro reconstitutions. An updated model for the cyclic assembly pathway of PR complexes that incorporates the present findings with earlier results is presented.

摘要

孕酮受体(PR)异源复合物在体外的组装涉及分子伴侣机制的至少八个组分,并且如早期报告所示,这些蛋白质彼此之间以及与PR表现出复杂、动态但有序的相互作用。使用选择性hsp90结合剂格尔德霉素(GA),我们发现PR在体外的组装可以在先前观察到的中间组装步骤处停滞。与成熟的PR复合物一样,中间复合物含有hsp90,但它们与成熟复合物的不同之处在于存在hsp70、p60和p48,并且不存在亲免素和p23。PR组装的停滞可能是由于GA直接阻断p23与hsp90结合的能力。GA介导的体外组装停滞的一个重要功能后果是,尽管受体复合物中存在hsp90,但所产生的PR复合物无法结合孕酮。GA能够(i)在完整细胞中迅速阻断PR的激素结合能力,以及(ii)以类似于体外重组过程中观察到的方式改变COS细胞PR复合物的组成,这证明了体外观察结果的生物学意义。本文提出了一个更新的PR复合物循环组装途径模型,该模型将目前的研究结果与早期结果结合在一起。

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