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Molecular Dynamics Simulations of a Catalytic Multivalent Peptide–Nanoparticle Complex

机译:催化多价肽 - 纳米粒子复合物的分子动力学模拟

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摘要

Molecular modeling of a supramolecular catalytic system is conducted resulting from the assembling between a small peptide and the surface of cationic self-assembled monolayers on gold nanoparticles, through a multiscale iterative approach including atomistic force field development, flexible docking with Brownian Dynamics and µs-long Molecular Dynamics simulations. Self-assembly is a prerequisite for the catalysis, since the catalytic peptides do not display any activity in the absence of the gold nanocluster. Atomistic simulations reveal details of the association dynamics as regulated by defined conformational changes of the peptide due to peptide length and sequence. Our results show the importance of a rational design of the peptide to enhance the catalytic activity of peptide–nanoparticle conjugates and present a viable computational approach toward the design of enzyme mimics having a complex structure–function relationship, for technological and nanomedical applications.
机译:通过在金纳米粒子上的小肽和阳离子自组装单层之间的组装,通过多尺度迭代方法来进行超分子催化系统的分子模拟,包括原子迭代探测,柔性与棕色动力学和μs长分子动力学模拟。自组装是催化的先决条件,因为催化肽在没有金纳米蛋白的情况下没有显示任何活性。原子模拟显示通过肽长度和序列的肽的定义构象变化来揭示关联动力学的细节。我们的结果表明,肽的合理设计的重要性,以增强肽 - 纳米颗粒缀合物的催化活性,并提高了具有复杂结构功能关系的酶模拟设计的可行的计算方法,用于技术和纳米医疗应用。

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