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(β/α)(8)桶蛋白的共进化残基在稳定活性位点结构和协调蛋白质动力学方面发挥作用。

Coevolving residues of (beta/alpha)(8)-barrel proteins play roles in stabilizing active site architecture and coordinating protein dynamics.

机构信息

State Key Laboratory of Genetic Engineering, Institute of Genetics, School of Life Sciences, Fudan University, 220 Handan Road, Shanghai 200433, PR China.

出版信息

J Struct Biol. 2008 Dec;164(3):281-92. doi: 10.1016/j.jsb.2008.09.003. Epub 2008 Sep 19.

Abstract

Indole-3-glycerol phosphate synthase (IGPS) is a representative of (beta/alpha)(8)-barrel proteins-the most common enzyme fold in nature. To better understand how the constituent amino-acids work together to define the structure and to facilitate the function, we investigated the evolutionary and dynamical coupling of IGPS residues by combining statistical coupling analysis (SCA) and molecular dynamics (MD) simulations. The coevolving residues identified by the SCA were found to form a network which encloses the active site completely. The MD simulations showed that these coevolving residues are involved in the correlated and anti-correlated motions. The correlated residues are within van der Waals contact and appear to maintain the active site architecture; the anti-correlated residues are mainly distributed on opposite sides of the catalytic cavity and coordinate the motions likely required for the substrate entry and product release. Our findings might have broad implications for proteins with the highly conserved (betaalpha)(8)-barrel in assessing the roles of amino-acids that are moderately conserved and not directly involved in the active site of the (beta/alpha)(8)-barrel. The results of this study could also provide useful information for further exploring the specific residue motions for the catalysis and protein design based on the (beta/alpha)(8)-barrel scaffold.

摘要

色氨酸-3-甘油磷酸合酶(IGPS)是(β/α)8-桶蛋白的代表,这是自然界中最常见的酶折叠。为了更好地理解组成氨基酸如何协同作用来定义结构并促进功能,我们通过结合统计耦合分析(SCA)和分子动力学(MD)模拟研究了 IGPS 残基的进化和动力学耦合。SCA 识别的共进化残基形成了一个完全包围活性位点的网络。MD 模拟表明,这些共进化残基参与了相关和非相关运动。相关残基在范德华接触内,似乎维持活性位点结构;非相关残基主要分布在催化腔的相对两侧,协调底物进入和产物释放所需的运动。我们的发现可能对具有高度保守(βα)8-桶的蛋白质具有广泛的意义,可用于评估中度保守且不直接参与(β/α)8-桶活性位点的氨基酸的作用。这项研究的结果还可以为进一步探索基于(β/α)8-桶支架的催化和蛋白质设计的特定残基运动提供有用信息。

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