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蛋白酶特异性中的亚位点协同性。

Subsite cooperativity in protease specificity.

作者信息

Ng Natasha M, Pike Robert N, Boyd Sarah E

机构信息

Department of Biochemistry and Molecular Biology, Monash University, Clayton, Victoria 3800, Australia.

出版信息

Biol Chem. 2009 May-Jun;390(5-6):401-7. doi: 10.1515/BC.2009.065.

Abstract

Proteases play vital roles in a range of biological processes, such as cell cycle, cell growth and differentiation, apoptosis, haemostasis and signalling. Fundamental to our knowledge of protease action is an understanding of how the active site operates; this has been examined through extensive studies of the substrate specificity of the enzymes. Kinetic and structural analyses have shown that the binding of a particular substrate residue at a protease subsite can have either a positive or negative influence on the binding of particular residues at other subsites. This phenomenon has been termed subsite cooperativity and has been observed in a wide range of proteases, often between non-adjacent subsites. This review aims to highlight studies where subsite cooperativity has been observed, experimental techniques used in the past and potential methods that can be employed to comprehensively examine this phenomenon. Further understanding of how the protease active site recognises and chooses its substrates for cleavage will have a significant impact on the development of pharmaceuticals that target these enzymes.

摘要

蛋白酶在一系列生物过程中发挥着至关重要的作用,如细胞周期、细胞生长与分化、细胞凋亡、止血和信号传导等。我们对蛋白酶作用的认识的基础是了解其活性位点是如何运作的;这已通过对这些酶的底物特异性的广泛研究进行了考察。动力学和结构分析表明,蛋白酶亚位点上特定底物残基的结合对其他亚位点上特定残基的结合可能有正面或负面影响。这种现象被称为亚位点协同性,并且在多种蛋白酶中都有观察到,通常发生在非相邻的亚位点之间。本综述旨在突出那些观察到亚位点协同性的研究、过去使用的实验技术以及可用于全面研究这一现象的潜在方法。对蛋白酶活性位点如何识别并选择其裂解底物的进一步理解,将对靶向这些酶的药物开发产生重大影响。

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