首页> 外文期刊>Journal of chemical theory and computation: JCTC >Designing Short Peptides with High Affinity for Organic Molecules: A Combined Docking, Molecular Dynamics, And Monte Carlo Approach
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Designing Short Peptides with High Affinity for Organic Molecules: A Combined Docking, Molecular Dynamics, And Monte Carlo Approach

机译:设计有机分子的高亲和力短肽:结合的对接,分子动力学和蒙特卡洛方法。

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摘要

We present a method for designing artificial receptors capable of binding with high affinity to a chosen target organic molecule. The primary sequence of the peptide is optimized to maximize its binding affinity. Our algorithm builds on a combination of molecular dynamics, semiflexible docking, and replica exchange Monte Carlo and performs simultaneous sampling in sequence and conformational spaces carefully selecting the degree of flexibility in the mutated peptides. The approach is used to design a decapeptide able to bind efavirenz. The calculated binding energy of the designed peptide (approximately -12 kcal/mol) was confirmed experimentally by fluorescence measurements. NMR spectroscopy confirmed the interactions between the peptide and the efavirenz molecule predicted by the algorithm.
机译:我们提出了一种设计能够以高亲和力结合所选目标有机分子的人工受体的方法。优化肽的一级序列以使其结合亲和力最大化。我们的算法建立在分子动力学,半柔性对接和副本交换蒙特卡洛相结合的基础上,并在序列和构象空间中进行同步采样,仔细选择突变肽段的柔性程度。该方法用于设计能够结合依非韦伦的十肽。通过荧光测量实验确定了设计的肽的计算的结合能(约-12kcal / mol)。 NMR光谱证实了该算法预测的肽与依非韦伦分子之间的相互作用。

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