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Free-energy landscape of intrinsically disordered proteins investigated by all-atom multicanonical molecular dynamics

机译:通过全原子多经典分子动力学研究内在无序蛋白的自由能态

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摘要

We introduce computational studies on intrinsically disordered proteins (IDPs). Especially, we present our multicanonical molecular dynamics (McMD) simulations of two IDP-partner systems: NRSF-mSin3 and pKID-KIX. McMD is one of enhanced conformational sampling methods useful for conformational sampling of biomolecular systems. IDP adopts a specific tertiary structure upon binding to its partner molecule, although it is unstructured in the unbound state (i.e. the free state). This IDP-specific property is called "coupled folding and binding". The McMD simulation treats the biomolecules with an all-atom model immersed in an explicit solvent. In the initial configuration of simulation, IDP and its partner molecules are set to be distant from each other, and the IDP conformation is disordered. The computationally obtained free-energy landscape for coupled folding and binding has shown that native- and non-native-complex clusters distribute complicatedly in the conformational space. The all-atom simulation suggests that both of induced-folding and population-selection are coupled complicatedly in the coupled folding and binding. Further analyses have exemplified that the conformational fluctuations (dynamical flexibility) in the bound and unbound states are essentially important to characterize IDP functioning.
机译:我们介绍了对内在无序蛋白(IDP)的计算研究。尤其是,我们介绍了两个IDP伙伴系统的多规范分子动力学(McMD)模拟:NRSF-mSin3和pKID-KIX。 McMD是用于生物分子系统构象采样的增强构象采样方法之一。 IDP在与其伴侣分子结合时采用特定的三级结构,尽管它在未结合状态(即自由状态)下是非结构化的。此特定于IDP的属性称为“折叠和绑定耦合”。 McMD模拟使用浸入明确溶剂中的全原子模型处理生物分子。在模拟的初始配置中,将IDP及其伙伴分子设置为彼此远离,并且IDP构象无序。通过计算获得的用于折叠和结合的自由能态图表明,天然和非天然复杂簇在构象空间中分布复杂。全原子模拟表明诱导折叠和种群选择在耦合折叠和结合中复杂地耦合。进一步的分析表明,结合态和非结合态的构象波动(动态灵活性)对于表征IDP功能至关重要。

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