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Strong Repulsive Forces between Protein and Oligo (Ethylene Glycol) Self-Assembled Monolayers: A Molecular Simulation Study

机译:蛋白质和寡聚(乙二醇)自组装单层膜之间的强排斥力:分子模拟研究

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摘要

Restrained molecular dynamics simulations were performed to study the interaction forces of a protein with the self-assembled monolayers (SAMs) of S(CH2)4(EG)4OH, S(CH2)11OH, and S(CH2)11CH3 in the presence of water molecules. The force-distance curves were calculated by fixing the center of mass of the protein at several separation distances from the SAM surface. Simulation results show that the relative strength of repulsive force acting on the protein is in the decreasing order of OEG-SAMs > OH-SAMs > CH3-SAMs. The force contributions from SAMs and water molecules, the structural and dynamic behavior of hydration water, and the flexibility and conformation state of SAMs were also examined to study how water structure at the interface and SAM flexibility affect the forces exerted on the protein. Results show that a tightly bound water layer adjacent to the OEG-SAMs is mainly responsible for the large repulsive hydration force.
机译:进行约束分子动力学模拟以研究蛋白质与S(CH2)4(EG)4OH,S(CH2)11OH和S(CH2)11CH3的自组装单层(SAM)的相互作用力水分子。通过将蛋白质的质心固定在距SAM表面几个距离的位置来计算力-距离曲线。模拟结果表明,作用在蛋白质上的排斥力的相对强度依次为OEG-SAMs> OH-SAMs> CH3-SAMs。还研究了SAMs和水分子的作用力,水化水的结构和动力学行为以及SAMs的柔韧性和构象状态,以研究界面处的水结构和SAM柔韧性如何影响施加在蛋白质上的力。结果表明,与OEG-SAMs相邻的紧密结合的水层是造成较大排斥水力的主要原因。

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