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Molecular dynamics simulations and linear response theories jointly describe biphasic responses of myoglobin relaxation and reveal evolutionarily conserved frequent communicators

机译:分子动力学模拟和线性响应理论联合描述了肌球蛋白松弛的双相反应,揭示了进化守恒的频繁的通信者

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In this study, we provide a time-dependent mechanical model, taking advantage of molecular dynamics simulations, quasiharmonic analysis of molecular dynamics trajectories, and time-dependent linear response theories to describe vibrational energy redistribution within the protein matrix. The theoretical description explained the observed biphasic responses of specific residues in myoglobin to CO-photolysis and photoexcitation on heme. The fast responses were found to be triggered by impulsive forces and propagated mainly by principal modes 40 cm-1. The predicted fast responses for individual atoms were then used to study signal propagation within the protein matrix and signals were found to propagate ~8 times faster across helices (4076 m/s) than within the helices, suggesting the importance of tertiary packing in the sensitivity of proteins to external perturbations. We further developed a method to integrate multiple intramolecular signal pathways and discover frequent "communicators". These communicators were found to be evolutionarily conserved including those distant from the heme.2019 ? The Biophysical Society of Japan.
机译:在这项研究中,我们提供了一个时间依赖的机械模型,利用分子动力学模拟,分子动力学轨迹的Quasiharmonic分析,以及时间依赖性线性响应理论来描述蛋白质基质内的振动能量再分配。理论描述阐述了肌红叶蛋白特定残基对血红素的共光解和光透析的观察到的双相反应。发现快速响应被脉冲力触发,并主要由主要模式<40cm-1传播。然后使用对单个原子的预测的快速反应研究蛋白质基质内的信号繁殖,发现信号越过螺旋(4076 m / s)速度比螺旋在螺旋内快速传播〜8倍,这表明三级包装在敏感度中的重要性蛋白质到外部扰动。我们进一步开发了一种集成多个分子内信号通路的方法,并发现频繁的“通信器”。发现这些沟通者被进化地保守,包括距离血红素的遥远?日本的生物物理学学会。

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