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蛋白质结构、折叠及功能的基本单位。

Basic units of protein structure, folding, and function.

作者信息

Berezovsky Igor N, Guarnera Enrico, Zheng Zejun

机构信息

Bioinformatics Institute (BII), Agency for Science, Technology and Research (A*STAR), 30 Biopolis Street, #07-01, Matrix, 138671, Singapore; Department of Biological Sciences (DBS), National University of Singapore (NUS), 8 Medical Drive, 117579, Singapore.

Bioinformatics Institute (BII), Agency for Science, Technology and Research (A*STAR), 30 Biopolis Street, #07-01, Matrix, 138671, Singapore.

出版信息

Prog Biophys Mol Biol. 2017 Sep;128:85-99. doi: 10.1016/j.pbiomolbio.2016.09.009. Epub 2016 Sep 30.

DOI:10.1016/j.pbiomolbio.2016.09.009
PMID:27697476
Abstract

Study of the hierarchy of domain structure with alternative sets of domains and analysis of discontinuous domains, consisting of remote segments of the polypeptide chain, raised a question about the minimal structural unit of the protein domain. The hypothesis on the decisive role of the polypeptide backbone in determining the elementary units of globular proteins have led to the discovery of closed loops. It is reviewed here how closed loops form the loop-n-lock structure of proteins, providing the foundation for stability and designability of protein folds/domain and underlying their co-translational folding. Simplified protein sequences are considered here with the aim to explore the basic principles that presumably dominated the folding and stability of proteins in the early stages of structural evolution. Elementary functional loops (EFLs), closed loops with one or few catalytic residues, are, in turn, units of the protein function. They are apparent descendants of the prebiotic ring-like peptides, which gave rise to the first functional folds/domains being fused in the beginning of the evolution of protein structure. It is also shown how evolutionary relations between protein functional superfamilies and folds delineated with the help of EFLs can contribute to establishing the rules for design of desired enzymatic functions. Generalized descriptors of the elementary functions are proposed to be used as basic units in the future computational design.

摘要

对具有替代结构域集的结构域结构层次进行研究,并分析由多肽链远程片段组成的不连续结构域,引发了关于蛋白质结构域最小结构单元的问题。关于多肽主链在确定球状蛋白质基本单元中起决定性作用的假说,导致了闭环结构的发现。本文综述了闭环如何形成蛋白质的环锁结构,为蛋白质折叠/结构域的稳定性和可设计性提供基础,并支撑其共翻译折叠。这里考虑简化的蛋白质序列,目的是探索在结构进化早期可能主导蛋白质折叠和稳定性的基本原理。基本功能环(EFL)是具有一个或几个催化残基的闭环结构,反过来又是蛋白质功能的单元。它们显然是前生物环状肽的后代,这些环状肽在蛋白质结构进化开始时融合形成了第一个功能性折叠/结构域。还展示了借助EFL描绘的蛋白质功能超家族与折叠之间的进化关系如何有助于建立所需酶功能设计的规则。提出将基本功能的广义描述符用作未来计算设计的基本单元。

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