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使用无偏原子间势能理解 EF 手关闭途径。

Understanding the EF-hand closing pathway using non-biased interatomic potentials.

机构信息

Département de Biochimie, Centre Robert-Cedergren and GEPROM, Université de Montréal, C.P. 6128, Succursale Centre-Ville, Montréal, Québec H3C 3J7, Canada.

出版信息

J Chem Phys. 2012 Jan 21;136(3):035101. doi: 10.1063/1.3671986.

Abstract

The EF-hand superfamily of proteins is characterized by the presence of calcium binding helix-loop-helix structures. Many of these proteins undergo considerable motion responsible for a wide range of properties upon binding but the exact mechanism at the root of this motion is not fully understood. Here, we use an unbiased accelerated multiscale simulation scheme, coupled with two force fields - CHARMM-EEF1 and the extended OPEP - to explore in details the closing pathway, from the unbound holo state to the closed apo state, of two EF-hand proteins, the Calmodulin and Troponin C N-terminal nodules. Based on a number of closing simulations for these two sequences, we show that the EF-hand β-scaffold, identified as crucial by Grabarek for the EF-hand opening driven by calcium binding, is also important in closing the EF-hand. We also show the crucial importance of the phenylalanine situated at the end of first EF-hand helix, and identify an intermediate state modulating its behavior, providing a detailed picture of the closing mechanism for these two representatives of EF-hand proteins.

摘要

EF 手超家族的蛋白质的特征是存在钙结合螺旋-环-螺旋结构。许多这样的蛋白质经历相当大的运动,负责在结合时产生广泛的性质,但这种运动的根本机制还不完全理解。在这里,我们使用无偏加速多尺度模拟方案,结合两种力场——CHARMM-EEF1 和扩展 OPEP,详细探讨了两个 EF 手蛋白(钙调蛋白和肌钙蛋白 C N 端结节)从未结合的全酶状态到封闭的无酶状态的关闭途径。基于对这两个序列的多次关闭模拟,我们表明 EF 手β支架,由 Grabarek 确定为钙结合驱动的 EF 手打开的关键,在关闭 EF 手时也很重要。我们还表明,位于第一个 EF 手螺旋末端的苯丙氨酸的重要性,并确定了一个中间状态来调节其行为,为这两种 EF 手蛋白代表提供了关闭机制的详细描述。

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