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自组装环肽的能量景观与全局优化

Energy Landscapes and Global Optimization of Self-Assembling Cyclic Peptides.

作者信息

Oakley Mark T, Johnston Roy L

机构信息

School of Chemistry, University of Birmingham , Edgbaston, Birmingham, B15 2TT, United Kingdom.

出版信息

J Chem Theory Comput. 2014 Apr 8;10(4):1810-6. doi: 10.1021/ct500004k.

Abstract

Self-assembled cyclic peptide nanotubes have attracted much attention because of their antimicrobial properties. Here, we present calculations on the formation of cyclic peptide dimers using basin-hopping and discrete path sampling. We present an analysis of the basin-hopping move sets that most efficiently explore the conformations of cyclic peptides. Group rotation moves, in which sections of the ring are rotated as a rigid body, are the most effective for cyclic peptides containing up to 20 residues. For cyclic peptide dimers, we find that a combination of group rotation intramolecular moves and rigid body intermolecular moves performs well. Discrete path sampling calculations on the cyclic peptide dimers show significant differences in the dimerization of hexa- and octapeptides.

摘要

自组装环状肽纳米管因其抗菌特性而备受关注。在此,我们展示了使用盆地跳跃法和离散路径采样法对环状肽二聚体形成的计算。我们对最有效地探索环状肽构象的盆地跳跃移动集进行了分析。基团旋转移动,即将环的部分作为刚体进行旋转,对于含多达20个残基的环状肽最为有效。对于环状肽二聚体,我们发现基团旋转分子内移动和刚体分子间移动的组合效果良好。对环状肽二聚体的离散路径采样计算表明六肽和八肽在二聚化方面存在显著差异。

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