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首页> 外文期刊>Biochemistry >Characterization of the interdomain motions in hen lysozyme using residual dipolar couplings as replica-averaged structural restraints in molecular dynamics simulations
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Characterization of the interdomain motions in hen lysozyme using residual dipolar couplings as replica-averaged structural restraints in molecular dynamics simulations

机译:使用残留偶极耦合作为分子动力学模拟中复制平均结构约束的鸡溶菌酶域间运动的表征

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摘要

Hen lysozyme is an enzyme characterized by the presence of two domains whose relative motions are involved in the mechanism of binding and release of the substrates. By using residual dipolar couplings as replica-averaged structural restraints in molecular dynamics simulations, we characterize the breathing motions describing the interdomain fluctuations of this protein. We found that the ensemble of conformations that we determined spans the entire range of structures of hen lysozyme deposited in the Protein Data Bank, including both the free and bound states, suggesting that the thermal motions in the free state provide access to the structures populated upon binding. The approach that we present illustrates how the use of residual dipolar couplings as replica-averaged structural restraints in molecular dynamics simulations makes it possible to explore conformational fluctuations of a relatively large amplitude in proteins.
机译:亨氏溶菌酶是一种酶,其特征在于存在两个域,其相对运动参与底物的结合和释放机制。通过在分子动力学模拟中使用残留的偶极偶合作为复制平均结构约束,我们表征了描述该蛋白域间波动的呼吸运动。我们发现,我们确定的构象集合涵盖了沉积在蛋白质数据库中的鸡溶菌酶的整个结构范围,包括自由状态和结合状态,这表明自由状态下的热运动提供了对组装于其上的结构的访问捆绑。我们目前的方法说明了如何在分子动力学模拟中使用残留的偶极偶合作为复制平均结构约束,从而有可能探索蛋白质中相对较大幅度的构象波动。

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