蛋白质复合物中蛋白质的三级结构与非结合形式的比较表明,在信号蛋白中普遍存在变构

Q3 Biochemistry, Genetics and Molecular Biology BMC Structural Biology Pub Date : 2012-05-03 DOI:10.1186/1472-6807-12-6
Lakshmipuram S Swapna, Swapnil Mahajan, Alexandre G de Brevern, Narayanaswamy Srinivasan
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引用次数: 18

摘要

在生物过程中,大多数信号和调节蛋白参与瞬时蛋白相互作用。它们通常作为各种细胞过程的关键调节因子,并且通常在蛋白质结合和非结合形式下都是稳定的。它们的非结合和结合形式的高分辨率结构的可用性为了解所涉及的分子机制提供了机会。在这项工作中,我们已经解决了“与蛋白质-蛋白质复合物形成相关的结构变化的性质、程度、位置和功能意义是什么?”该分析使用了76个非冗余的蛋白质-蛋白质复合物的高分辨率三维结构集,代表了不同的功能和相应的未结合形式。使用结构测量和蛋白质块描述研究了与蛋白质络合相关的结构变化。我们的研究强调了显著的结构重排发生在结合界面以及远离界面的区域,以形成高度特异性,稳定性和功能性的复合物。值得注意的是,主要未改变的界面主要与经历实质性结构改变的界面相互作用,揭示了每个复合物中至少存在一种结构调节成分。有趣的是,大约一半的复合物(主要由信号蛋白组成)在远离界面的表面显示出实质性的局部结构变化。正常模式分析和现有的一些复合物功能信息表明,许多这些变化是变构的。这种变化主要体现在结合后界面改变的蛋白质上,这意味着结构变化可能引发变构效应。虽然文献中有关于小分子效应器诱导变构的大规模研究,但据我们所知,这是第一个表明蛋白质效应器诱导变构盛行的研究。信号蛋白中变构位点的富集,其突变通常导致癌症等疾病,为使用变构调节剂对抗这些疾病提供了支持。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Comparison of tertiary structures of proteins in protein-protein complexes with unbound forms suggests prevalence of allostery in signalling proteins

Most signalling and regulatory proteins participate in transient protein-protein interactions during biological processes. They usually serve as key regulators of various cellular processes and are often stable in both protein-bound and unbound forms. Availability of high-resolution structures of their unbound and bound forms provides an opportunity to understand the molecular mechanisms involved. In this work, we have addressed the question “What is the nature, extent, location and functional significance of structural changes which are associated with formation of protein-protein complexes?”

A database of 76 non-redundant sets of high resolution 3-D structures of protein-protein complexes, representing diverse functions, and corresponding unbound forms, has been used in this analysis. Structural changes associated with protein-protein complexation have been investigated using structural measures and Protein Blocks description. Our study highlights that significant structural rearrangement occurs on binding at the interface as well as at regions away from the interface to form a highly specific, stable and functional complex. Notably, predominantly unaltered interfaces interact mainly with interfaces undergoing substantial structural alterations, revealing the presence of at least one structural regulatory component in every complex.

Interestingly, about one-half of the number of complexes, comprising largely of signalling proteins, show substantial localized structural change at surfaces away from the interface. Normal mode analysis and available information on functions on some of these complexes suggests that many of these changes are allosteric. This change is largely manifest in the proteins whose interfaces are altered upon binding, implicating structural change as the possible trigger of allosteric effect. Although large-scale studies of allostery induced by small-molecule effectors are available in literature, this is, to our knowledge, the first study indicating the prevalence of allostery induced by protein effectors.

The enrichment of allosteric sites in signalling proteins, whose mutations commonly lead to diseases such as cancer, provides support for the usage of allosteric modulators in combating these diseases.

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来源期刊
CiteScore
3.60
自引率
0.00%
发文量
0
审稿时长
>12 weeks
期刊介绍: BMC Structural Biology is an open access, peer-reviewed journal that considers articles on investigations into the structure of biological macromolecules, including solving structures, structural and functional analyses, and computational modeling.
期刊最新文献
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