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首页> 外文期刊>Journal of chemical theory and computation: JCTC >Mechanisms of Differential Allosteric Modulation in Homologous Proteins: Insights from the Analysis of Internal Dynamics and Energetics of PDZ Domains
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Mechanisms of Differential Allosteric Modulation in Homologous Proteins: Insights from the Analysis of Internal Dynamics and Energetics of PDZ Domains

机译:同源蛋白质的差异变构调节机制:从PDZ域的内部动力学和能量学分析的见解。

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摘要

Allostery is a general phenomenon in proteins whereby a perturbation at one site reverberates into a functional change at another one, through modulation of its conformational dynamics. Herein, we address the problem of how the molecular signal encoded by a ligand is differentially transmitted through the structures of two homologous PDZ proteins: PDZ2, which responds to binding with structural and dynamical changes in regions distal from the ligand site, and PDZ3, which is characterized by less-intense dynamical variations. We use novel methods of analysis of MD simulations in the unbound and bound states to investigate the determinants of the differential allosteric behavior of the two proteins. The analysis of the correlations between the redistribution of stabilization energy and local fluctuation patterns highlights the nucleus of residues responsible for the stabilization of the 3D fold, the stability core, as the substructure that defines the difference in the allosteric response: in PDZ2, it undergoes a consistent dynamic and energetic reorganization, whereas in PDZ3, it remains largely unperturbed. Specifically, we observe for PDZ2 a significant anticorrelation between the motions of distal loops and residues of the stability core and differences in the correlation patterns between the bound and unbound states. Such variation is not observed in PDZ3, indicating that its energetics and internal dynamics are less affected by the presence/absence of the ligand. Finally, we propose a model with a direct link between the modulation of the structural, energetic and dynamic properties of a protein, and its allosteric response to a perturbation.
机译:变构是蛋白质中的一种普遍现象,通过调节构象动力学,一个位点的扰动在另一位点回荡为功能改变。在本文中,我们解决了配体编码的分子信号如何通过两个同源PDZ蛋白的结构差异传递的问题:PDZ2(对配体位点远端区域的结构和动态变化的结合作出响应)和PDZ3其特点是动态变化较小。我们使用新的方法在未绑定和绑定状态下的MD模拟分析来调查这两种蛋白质的不同变构行为的决定因素。对稳定能重新分布和局部波动模式之间的相关性的分析突出显示了负责3D折叠稳定的残基核(稳定核心)是定义变构反应差异的子结构:在PDZ2中,它经历了始终如一的动态和充满活力的重组,而在PDZ3中,它基本上不受干扰。具体而言,我们观察到PDZ2在远端环的运动与稳定核心残基之间的显着反相关以及绑定状态和未绑定状态之间的相关模式之间的差异。在PDZ3中未观察到这种变化,表明其能量和内部动力学受配体存在/不存在的影响较小。最后,我们提出了一种模型,该模型在蛋白质的结构,能量和动态特性的调节与其对扰动的变构反应之间具有直接联系。

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