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首页> 外文期刊>Journal of chemical theory and computation: JCTC >Implicit-Solvent Coarse-Grained Simulation with a Fluctuating Interface Reveals a Molecular Mechanism for Peptoid Mono layer Buckling
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Implicit-Solvent Coarse-Grained Simulation with a Fluctuating Interface Reveals a Molecular Mechanism for Peptoid Mono layer Buckling

机译:具有波动界面的隐式溶剂粗粒模拟揭示了类肽单层屈曲的分子机理

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摘要

Peptoid polymers form extended two-dimensional nanostructures via an interface-mediated assembly process: the amphiphilic peptoids first adsorb to an air water interface as a monolayer, then buckle and collapse into free-floating bilayer nanosheets when the interface is compressed. Here, we investigate the molecular mechanism of monolayer buckling by developing a method for incorporating interface fluctuations into an implicit-solvent coarse-grained model. Representing the interface with a triangular mesh controlled by surface tension and surfactant adsorption, we predict the direction of buckling for peptoids with a segregated arrangement of charged side chains and predict that peptoids with with an alternating charge pattern should buckle less easily than peptoids with a segregated charge pattern.
机译:类肽聚合物通过界面介导的组装过程形成扩展的二维纳米结构:两亲类肽首先以单层形式吸附到空气水界面,然后在界面被压缩时屈曲并塌陷成自由漂浮的双层纳米片。在这里,我们通过开发一种将界面波动纳入隐式溶剂粗粒度模型的方法来研究单层屈曲的分子机理。用受表面张力和表面活性剂吸附控制的三角形网格表示界面,我们预测带电荷侧链分离排列的类肽的屈曲方向,并预测带交替电荷模式的类肽比具有分离的类肽的弯曲更容易充电模式。

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