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单分散的Hsp16.3九聚体表现出动态解离和重新缔合,九聚体解离是伴侣样活性的前提条件。

Monodisperse Hsp16.3 nonamer exhibits dynamic dissociation and reassociation, with the nonamer dissociation prerequisite for chaperone-like activity.

作者信息

Gu Liangcai, Abulimiti Abuduaini, Li Wen, Chang Zengyi

机构信息

Protein Science Laboratory of the Education Ministry, People's Republic of China, Beijing 100084, People's Republic of China.

出版信息

J Mol Biol. 2002 May 31;319(2):517-26. doi: 10.1016/S0022-2836(02)00311-X.

Abstract

Small heat-shock proteins (sHsps) of various origins exist commonly as oligomers and exhibit chaperone-like activities in vitro. Hsp16.3, the sHsp from Mycobacterium tuberculosis, was previously shown to exist as a monodisperse nonamer in solution when analyzed by size-exclusion chromatography and electron cryomicroscropy. This study represents part of our effort to understand the chaperone mechanism of Hsp16.3, focusing on the role of the oligomeric status of the protein. Here, we present evidence to show that the Hsp16.3 nonamer dissociates at elevated temperatures, accompanied by a greatly enhanced chaperone-like activity. Moreover, the chaperone-like activity was increased dramatically when the nonameric structure of Hsp16.3 was disturbed by chemical cross-linking, which impeded the correct reassociation of Hsp16.3 nonamer. These suggest that the dissociation of the nonameric structure is a prerequisite for Hsp16.3 to bind to denaturing substrate proteins. On the other hand, our data obtained by using radiolabeled and non-radiolabeled proteins clearly demonstrated that subunit exchange occurs readily between the Hsp16.3 oligomers, even at a temperature as low as 4 degrees C. In light of all these observations, we propose that Hsp16.3, although it appears to be homogeneous when examined at room temperature, actually undertakes rapid dynamic dissociation/reassociation, with the equilibrium, and thus the chaperone-like activities, regulated mainly by the environmental temperature.

摘要

各种来源的小分子热休克蛋白(sHsps)通常以寡聚体形式存在,并在体外表现出类似伴侣蛋白的活性。结核分枝杆菌的sHsp即Hsp16.3,先前通过尺寸排阻色谱法和低温电子显微镜分析表明,它在溶液中以单分散九聚体形式存在。本研究是我们了解Hsp16.3伴侣蛋白机制工作的一部分,重点关注该蛋白寡聚状态的作用。在此,我们提供证据表明,Hsp16.3九聚体在温度升高时会解离,同时伴随类似伴侣蛋白的活性大幅增强。此外,当Hsp16.3的九聚体结构被化学交联破坏,从而阻碍Hsp16.3九聚体正确重新缔合时,其类似伴侣蛋白的活性会显著增加。这些表明,九聚体结构的解离是Hsp16.3结合变性底物蛋白的前提条件。另一方面,我们使用放射性标记和非放射性标记蛋白获得的数据清楚地表明,即使在低至4摄氏度的温度下,Hsp16.3寡聚体之间也很容易发生亚基交换。鉴于所有这些观察结果,我们提出,Hsp16.3尽管在室温下检测时似乎是均一的,但实际上会进行快速的动态解离/重新缔合,其平衡以及类似伴侣蛋白的活性主要受环境温度调节。

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