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首页> 外文期刊>The Journal of Chemical Physics >A multi-state coarse grained modeling approach for an intrinsically disordered peptide
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A multi-state coarse grained modeling approach for an intrinsically disordered peptide

机译:一种用于内在无序肽的多状态粗粒造粒模型方法

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摘要

Many proteins display a marginally stable tertiary structure, which can be altered via external stimuli. Since a majority of coarse grained (CG) models are aimed at structure prediction, their success for an intrinsically disordered peptide's conformational space with marginal stability and sensitivity to external stimuli cannot be taken for granted. In this study, by using the LK alpha 14 peptide as a test system, we demonstrate a bottom-up approach for constructing a multi-state CG model, which can capture the conformational behavior of this peptide in three distinct environments with a unique set of interaction parameters. LK alpha 14 is disordered in dilute solutions; however, it strictly adopts the alpha-helix conformation upon aggregation or when in contact with a hydrophobic/hydrophilic interface. Our bottom-up approach combines a generic base model, that is unbiased for any particular secondary structure, with nonbonded interactions which represent hydrogen bonds, electrostatics, and hydrophobic forces. We demonstrate that by using carefully designed all atom potential of mean force calculations from all three states of interest, one can get a balanced representation of the nonbonded interactions. Our CG model behaves intrinsically disordered in bulk water, folds into an alpha-helix in the presence of an interface or a neighboring peptide, and is stable as a tetrameric unit, successfully reproducing the all atom molecular dynamics simulations and experimental results. Published by AIP Publishing.
机译:许多蛋白质显示临界稳定的三级结构,其可以通过外部刺激所改变。由于大多数粗晶的(CG)模型,旨在结构预测,不能采取其为固有无序肽与临界稳定性和灵敏度对外部刺激的构象空间成功是理所当然的。在这项研究中,通过使用LK阿尔法14肽作为测试系统中,我们展示用于构造多状态CG模型,其可与一组独特的捕获该肽的构象行为在三个不同的环境中自底向上的方法相互作用参数。 LK阿尔法14被无序在稀溶液;然而,它严格地采用与疏水/亲水界面接触时的聚集或当α-螺旋构象。我们的自下而上的方法结合了一个通用的基本模型,即是无偏的对于任何特定的二级结构,利用该表示氢键,静电和疏水力无粘合相互作用。我们证明,通过使用精心设计的平均力计算的所有原子潜在相关的所有三种状态,一是可以得到非化学键相互作用的平衡的代表性。在大体积的水本质上无序我们的CG模型的行为,折叠成在接口或相邻肽的存在的α-螺旋,并且是稳定的,因为四聚体单元,成功地再现所有原子分子动力学模拟和实验结果。通过AIP发布发布。

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