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蛋白质动力学稳定性的生物学作用。

Biological Roles of Protein Kinetic Stability.

作者信息

Colón Wilfredo, Church Jennifer, Sen Jayeeta, Thibeault Jane, Trasatti Hannah, Xia Ke

机构信息

Department of Chemistry and Chemical Biology, ‡Center for Biotechnology and Interdisciplinary Studies, and §Biochemistry and Biophysics Graduate Program, Rensselaer Polytechnic Institute , Troy, New York 12180, United States.

出版信息

Biochemistry. 2017 Nov 28;56(47):6179-6186. doi: 10.1021/acs.biochem.7b00942. Epub 2017 Nov 13.

Abstract

A protein's stability may range from nonexistent, as in the case of intrinsically disordered proteins, to very high, as indicated by a protein's resistance to degradation, even under relatively harsh conditions. The stability of this latter group is usually under kinetic control because of a high activation energy for unfolding that virtually traps the protein in a specific conformation, thereby conferring resistance to proteolytic degradation and misfolding aggregation. The usual outcome of kinetic stability is a longer protein half-life. Thus, the protective role of protein kinetic stability is often appreciated, but relatively little is known about the extent of biological roles related to this property. In this Perspective, we will discuss several known or putative biological roles of protein kinetic stability, including protection from stressors to avoid aggregation or premature degradation, achieving long-term phenotypic change, and regulating cellular processes by controlling the trigger and timing of molecular motion. The picture that emerges from this analysis is that protein kinetic stability is involved in a myriad of known and yet to be discovered biological functions via its ability to confer degradation resistance and control the timing, extent, and permanency of molecular motion.

摘要

蛋白质的稳定性范围很广,从不存在稳定性的内在无序蛋白质,到非常高的稳定性,这可由蛋白质即使在相对苛刻的条件下仍能抵抗降解来表明。后一组蛋白质的稳定性通常受动力学控制,因为展开所需的活化能很高,实际上将蛋白质困在特定构象中,从而使其具有抗蛋白水解降解和错误折叠聚集的能力。动力学稳定性的通常结果是蛋白质半衰期延长。因此,蛋白质动力学稳定性的保护作用常常得到认可,但对于与该特性相关的生物学作用程度却知之甚少。在这篇综述中,我们将讨论蛋白质动力学稳定性的几个已知或推测的生物学作用,包括免受应激源影响以避免聚集或过早降解、实现长期表型变化,以及通过控制分子运动的触发和时机来调节细胞过程。从这一分析中得出的情况是,蛋白质动力学稳定性通过其赋予抗降解能力以及控制分子运动的时机、程度和持久性,参与了无数已知和有待发现的生物学功能。

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