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老骥伏枥:Hsp70不断演变的世界。

New tricks for an old dog: the evolving world of Hsp70.

作者信息

Morano Kevin A

机构信息

Department of Microbiology and Molecular Genetics, University of Texas Medical School, 6431 Fannin St., Houston, TX 77030, USA.

出版信息

Ann N Y Acad Sci. 2007 Oct;1113:1-14. doi: 10.1196/annals.1391.018. Epub 2007 May 18.

Abstract

The Hsp70 chaperone is arguably the most studied member of the heat shock protein family, a legacy traced back to the early days of phage genetics. However, much still remains to be learned about this essential protein-folding machine. Its involvement in a number of human pathologies, ranging from cancer to protein aggregation diseases, underscores the need for a comprehensive understanding of the myriad cellular roles Hsp70 plays and the outstanding open questions. This article will explore several exciting avenues of research into the function and biology of the chaperone. Analysis of the many eukaryotic Hsp70 isoforms has demonstrated distinct functional roles for some Hsp70 members, to the point of transition from a protein "foldase" to a chaperone cofactor. New insights gained from structural studies have unveiled a likely model for interdomain communication and thus regulation of substrate binding and processing. Advances in small molecule modulation of Hsp70 activity are likely to have significant clinical impact. There is also a growing realization that Hsp70 participates in distinct functional networks in partnership with other protein chaperones. The field is thus at an exciting time when the substantial successes of the past have provided a solid framework that will be used to fuel both discovery and application--Hsp70, from molecule to man.

摘要

热休克蛋白70(Hsp70)伴侣蛋白可以说是热休克蛋白家族中研究最多的成员,这一传统可以追溯到噬菌体遗传学的早期。然而,关于这个重要的蛋白质折叠机器,仍有许多有待了解的地方。它涉及从癌症到蛋白质聚集疾病等多种人类病理状况,这突出表明需要全面了解Hsp70所发挥的众多细胞作用以及悬而未决的重要问题。本文将探讨几条关于该伴侣蛋白功能和生物学的令人兴奋的研究途径。对许多真核生物Hsp70同工型的分析表明,一些Hsp70成员具有不同的功能作用,甚至达到了从蛋白质“折叠酶”转变为伴侣蛋白辅助因子的程度。结构研究获得的新见解揭示了一种可能的结构域间通讯模型,从而对底物结合和加工进行调控。Hsp70活性小分子调节方面的进展可能会产生重大的临床影响。人们也越来越认识到,Hsp70与其他蛋白质伴侣蛋白合作参与不同的功能网络。因此,该领域正处于一个令人兴奋的时期,过去的重大成功提供了一个坚实的框架,将用于推动发现和应用——从分子到人类的Hsp70。

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