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On the Conservation of the Slow Conformational Dynamics within the Amino Acid Kinase Family: NAGK the Paradigm

机译:关于氨基酸激酶家族内慢构象动力学的守恒:NAGK范式

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摘要

N-Acetyl-L-Glutamate Kinase (NAGK) is the structural paradigm for examining the catalytic mechanisms and dynamics of amino acid kinase family members. Given that the slow conformational dynamics of the NAGK (at the microseconds time scale or slower) may be rate-limiting, it is of importance to assess the mechanisms of the most cooperative modes of motion intrinsically accessible to this enzyme. Here, we present the results from normal mode analysis using an elastic network model representation, which shows that the conformational mechanisms for substrate binding by NAGK strongly correlate with the intrinsic dynamics of the enzyme in the unbound form. We further analyzed the potential mechanisms of allosteric signalling within NAGK using a Markov model for network communication. Comparative analysis of the dynamics of family members strongly suggests that the low-frequency modes of motion and the associated intramolecular couplings that establish signal transduction are highly conserved among family members, in support of the paradigm sequence→structure→dynamics→function.
机译:N-乙酰-L-谷氨酸激酶(NAGK)是用于检查氨基酸激酶家族成员的催化机制和动力学的结构范例。鉴于NAGK的缓慢构象动力学(在微秒或更短的时间)可能是速率限制的,因此评估该酶固有的最合作运动模式的机制很重要。在这里,我们介绍了使用弹性网络模型表示的正常模式分析的结果,该结果表明NAGK结合底物的构象机制与未结合形式的酶的内在动力学高度相关。我们使用网络网络的马尔可夫模型进一步分析了NAGK中变构信号的潜在机制。对家庭成员动力学的比较分析有力地表明,低频运动模式和建立信号转导的相关分子内偶联在家族成员之间是高度保守的,以支持范式序列→结构→动力学→功能。

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