Department of Biological Sciences, University of Illinois at Chicago, Chicago, IL 60607, USA
Philos Trans R Soc Lond B Biol Sci. 2018 Jan 19;373(1738). doi: 10.1098/rstb.2016.0523.
Members of the GroEL/HSP60 protein family have been studied for many years because of their critical roles as ATP-dependent molecular chaperones, so it might come as a surprise that some have important functions in ATP-poor conditions, for example, when secreted outside the cell. At least some members of each of the HSP10, HSP70, HSP90, HSP100 and HSP110 heat shock protein families are also 'moonlighting proteins'. Moonlighting proteins exhibit more than one physiologically relevant biochemical or biophysical function within one polypeptide chain. In this class of multifunctional proteins, the multiple functions are not due to gene fusions or multiple proteolytic fragments. Several hundred moonlighting proteins have been identified, and they include a diverse set of proteins with a large variety of functions. Some participate in multiple biochemical processes by using an active site pocket for catalysis and a different part of the protein's surface to interact with other proteins. Moonlighting proteins play a central role in many diseases, and the development of novel treatments would be aided by more information addressing current questions, for example, how some are targeted to multiple cellular locations and how a single function can be targeted by therapeutics without targeting a function not involved in disease.This article is part of the theme issue 'Heat shock proteins as modulators and therapeutic targets of chronic disease: an integrated perspective'.
GroEL/HSP60 蛋白家族的成员因其作为 ATP 依赖性分子伴侣的关键作用而被研究了多年,因此,有些成员在 ATP 匮乏的条件下(例如在细胞外分泌时)具有重要功能,这可能会让人感到惊讶。至少每个 HSP10、HSP70、HSP90、HSP100 和 HSP110 热休克蛋白家族的成员都有一些也是“兼职蛋白”。兼职蛋白在一条多肽链中表现出一种以上与生理相关的生化或生物物理功能。在这类多功能蛋白中,多种功能不是由于基因融合或多个蛋白水解片段。已经鉴定出数百种兼职蛋白,它们包括一组具有多种功能的多样化蛋白。有些蛋白通过利用活性位点口袋进行催化,并利用蛋白质表面的不同部分与其他蛋白相互作用,从而参与多种生化过程。兼职蛋白在许多疾病中起着核心作用,更多的信息可以帮助解决当前的问题,例如,某些蛋白如何靶向多个细胞位置,以及如何通过治疗靶向一种不涉及疾病的功能而不靶向一种不涉及疾病的功能,这将有助于开发新的治疗方法。本文是主题为“热休克蛋白作为慢性疾病的调节剂和治疗靶点:综合视角”的一部分。