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酵母分支酸变位酶的变构机制:动态分析

The allosteric mechanism of yeast chorismate mutase: a dynamic analysis.

作者信息

Kong Yifei, Ma Jianpeng, Karplus Martin, Lipscomb William N

机构信息

Department of Chemistry and Chemical Biology, Harvard University, 12 Oxford St., Cambridge, MA 02138, USA.

出版信息

J Mol Biol. 2006 Feb 10;356(1):237-47. doi: 10.1016/j.jmb.2005.10.064. Epub 2005 Nov 10.

Abstract

The effector-regulated allosteric mechanism of yeast chorismate mutase (YCM) was studied by normal mode analysis and targeted molecular dynamics. The normal mode analysis shows that the conformational change between YCM in the R state and in the T state can be represented by a relatively small number of low-frequency modes. This suggests that the transition is coded in the structure and is likely to have a low energetic barrier. Quantitative comparisons (i.e. frequencies) between the low-frequency modes of YCM with and without effectors (modeled structures) reveal that the binding of Trp increases the global flexibility, whereas Tyr decreases global flexibility. The targeted molecular dynamics simulation of substrate analog release from the YCM active site suggests that a series of residues are critical for orienting and "recruiting" the substrate. The simulation led to the switching of a series of substrate-release-coupled salt-bridge partners in the ligand-binding domain; similar changes occur in the transition between YCM R-state and T-state crystal structures. Thus, the normal mode analysis and targeted molecular dynamics results provide evidence that the effectors regulate YCM activity by influencing the global flexibility. The change in flexibility is coupled to the binding of substrate to the T state and release of the product from the R state, respectively.

摘要

通过正常模式分析和靶向分子动力学研究了酵母分支酸变位酶(YCM)的效应物调节变构机制。正常模式分析表明,YCM在R态和T态之间的构象变化可以由相对较少数量的低频模式来表示。这表明这种转变在结构中是编码的,并且可能具有较低的能量屏障。对有和没有效应物的YCM低频模式(建模结构)进行定量比较(即频率)发现,色氨酸的结合增加了全局灵活性,而酪氨酸则降低了全局灵活性。从YCM活性位点释放底物类似物的靶向分子动力学模拟表明,一系列残基对于底物的定向和“招募”至关重要。该模拟导致配体结合域中一系列与底物释放偶联的盐桥伙伴发生切换;在YCM的R态和T态晶体结构转变中也会发生类似变化。因此,正常模式分析和靶向分子动力学结果提供了证据,证明效应物通过影响全局灵活性来调节YCM活性。灵活性的变化分别与底物与T态的结合以及产物从R态的释放相关联。

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