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探索变构蛋白的序列和结构基础。

Toward an understanding of the sequence and structural basis of allosteric proteins.

机构信息

Department of Pathophysiology, Key Laboratory of Cell Differentiation and Apoptosis of Chinese Ministry of Education, Shanghai JiaoTong University, School of Medicine, Shanghai 200025, China.

出版信息

J Mol Graph Model. 2013 Mar;40:30-9. doi: 10.1016/j.jmgm.2012.12.011. Epub 2013 Jan 5.

Abstract

Allostery is the most efficient means of regulating protein functions, ranging from the control of metabolic mechanisms to signal transduction pathways. Although allosteric regulation has been recognized for half a century, our knowledge is limited to the characteristics of allosteric proteins and the structural coupling of allosteric sites and modulators. In this paper, we present a comprehensive analysis of allosteric proteins that provides insight into the foundation of allosteric interactions by revealing a series of common features in the allosteric proteins. Allosteric proteins mainly appear in transferases, and phosphorylation is the most common type of modification found in allosteric proteins. Disorders related to allosteric proteins primarily comprise metabolic diseases and cancers. In general, allosteric proteins prefer to exist as monomers or even-numbered multimers. Greater stability and hydrophobicity are observed in allosteric proteins than in general proteins. Further analysis of the allosteric sites reveals a series of buried and compact pockets composed of significantly greater hydrophobic surface area than the corresponding orthosteric sites. The hydrophobicity of the allosteric sites plays a dominant role in the binding of allosteric modulators as observed in the analysis of 106 diverse allosteric protein-modulator pairs. These results may be of great significance in predicting which proteins are allosteric and in designing novel triggers to inhibit or activate proteins of interest.

摘要

变构作用是调节蛋白质功能的最有效方式,范围涵盖代谢机制的控制到信号转导途径。尽管变构调节已被认识了半个世纪,但我们的知识仅限于变构蛋白的特性和变构位点与调节剂的结构偶联。在本文中,我们对变构蛋白进行了全面分析,通过揭示变构蛋白中一系列常见特征,深入了解变构相互作用的基础。变构蛋白主要出现在转移酶中,磷酸化是变构蛋白中最常见的修饰类型。与变构蛋白相关的疾病主要包括代谢疾病和癌症。一般来说,变构蛋白更喜欢以单体甚至偶数聚体的形式存在。与一般蛋白质相比,变构蛋白具有更大的稳定性和疏水性。对变构位点的进一步分析揭示了一系列埋藏的紧凑口袋,其疏水性表面积明显大于相应的正位点。在对 106 种不同的变构蛋白-调节剂对的分析中,变构位点的疏水性在变构调节剂的结合中起着主导作用。这些结果对于预测哪些蛋白质具有变构作用以及设计抑制或激活感兴趣的蛋白质的新型触发剂可能具有重要意义。

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