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柔性末端在大肠杆菌多分散小分子热休克蛋白IbpB的寡聚状态温度响应性和伴侣样活性中的重要作用。

The essential role of the flexible termini in the temperature-responsiveness of the oligomeric state and chaperone-like activity for the polydisperse small heat shock protein IbpB from Escherichia coli.

作者信息

Jiao Wangwang, Qian Mengding, Li Pulin, Zhao Lei, Chang Zengyi

机构信息

Department of Biological Sciences and Biotechnology, Tsinghua University, Beijing, 100084, China.

出版信息

J Mol Biol. 2005 Apr 8;347(4):871-84. doi: 10.1016/j.jmb.2005.01.029.

Abstract

Small heat shock proteins (sHSPs) represent an abundant and ubiquitous family of molecular chaperones that are believed to prevent irreversible aggregation of other cellular proteins under stress conditions. One of the most prominent features of sHSPs is that they exist as homo-oligomers. Examples of both monodisperse and polydisperse oligomers are found within this family. The small heat shock inclusion-body binding protein B (IbpB) of Escherichia coli, originally discovered as a component of inclusion bodies, exhibits a pronounced polydispersity in its oligomeric state. This research was performed to elucidate the temperature effect on the oligomeric state and chaperone-like activity of the polydisperse IbpB oligomers, as well as the structural basis for such a temperature effect. The data presented here demonstrate that the large oligomers of IbpB progressively dissociate into smaller ones at increasing heat-shock temperatures, accompanied by a notable enhancement of chaperone-like activities. The secondary structure, enriched mainly by beta-strands, is slightly changed with such temperature increases. The dimeric building blocks, which seem to be highly stable, act as the functional unit of IbpB. Limited proteolysis was used to identify the susceptible sites in IbpB that may compose the subunit interfaces, which indicated that the 11 residues at both the N and the C terminus are highly flexible and the removal of each will lead to the formation of dimers, as well as the disappearance of chaperone-like activities. Truncation of 11 residues from either end, using recombinant DNA technology, also led to the formation of dimeric mutant IbpB proteins lacking chaperone-like activities. Taken together, the flexible termini appear to be essential for small heat shock protein IbpB to generate various temperature-responsive oligomers, which exhibit various levels of chaperone-like activities, by interlinking or separating the dimer building blocks.

摘要

小热休克蛋白(sHSPs)是一类丰富且普遍存在的分子伴侣家族,被认为在应激条件下可防止其他细胞蛋白发生不可逆聚集。sHSPs最显著的特征之一是它们以同型寡聚体形式存在。在这个家族中既发现了单分散寡聚体,也发现了多分散寡聚体的例子。大肠杆菌的小热休克包涵体结合蛋白B(IbpB)最初作为包涵体的一个组分被发现,其寡聚状态表现出明显的多分散性。进行这项研究是为了阐明温度对多分散IbpB寡聚体的寡聚状态和类伴侣活性的影响,以及这种温度效应的结构基础。此处呈现的数据表明,随着热休克温度升高,IbpB的大寡聚体逐渐解离成较小的寡聚体,同时类伴侣活性显著增强。主要由β链富集的二级结构随温度升高略有变化。似乎高度稳定的二聚体结构单元作为IbpB的功能单元。采用有限蛋白酶解来鉴定IbpB中可能构成亚基界面的敏感位点,结果表明N端和C端的11个残基高度灵活,去除其中任何一个都会导致二聚体形成,同时类伴侣活性消失。利用重组DNA技术从两端截断11个残基,也导致形成缺乏类伴侣活性的二聚体突变IbpB蛋白。综上所述,柔性末端似乎对于小热休克蛋白IbpB通过连接或分离二聚体结构单元来产生具有不同水平类伴侣活性的各种温度响应性寡聚体至关重要。

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