Monte Carlo Techniques for Drug Design: The Success Case of PELE

J. Gilabert, D. Lecina, Jorge Estrada, V. Guallar
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引用次数: 16

Abstract

This chapter summarizes the most representative software packages that readily allow running Monte Carlo (MC) simulations in relevant scenarios for drug design. It explores in detail the Protein Energy Landscape Exploration (PELE) program, providing first the main characteristics of the technique, followed by an analysis of the different application studies in mapping protein‐ligand interactions. The ligand, formed by a rigid core and a set of rotatable side chains, is perturbed by translating and rotating it. PELE creates a list of perturbation poses, and then chooses the one with the lowest system energy. PELE was originally designed to map ligand migration pathways: its first applications aimed at finding exit pathways starting from ligand‐bound crystallographic structures. Additional applied studies have centered on modeling enzymatic mechanisms and engineering; the same techniques applied in mapping protein‐drug interactions can be used in the study of substrate recognition by enzymes.
蒙特卡罗技术用于药物设计:PELE的成功案例
本章总结了最具代表性的软件包,这些软件包可以很容易地在药物设计的相关场景中运行蒙特卡罗(MC)模拟。它详细探讨了蛋白质能量景观勘探(PELE)计划,首先提供了该技术的主要特征,然后分析了在绘制蛋白质-配体相互作用方面的不同应用研究。配体由刚性核和一组可旋转侧链组成,通过平移和旋转使其受到扰动。PELE创建一个扰动姿态列表,然后选择系统能量最低的一个。PELE最初设计用于绘制配体迁移路径:它的第一个应用旨在寻找从配体结合的晶体结构开始的出口路径。其他的应用研究集中在模拟酶的机制和工程;用于绘制蛋白质-药物相互作用图谱的相同技术也可用于酶对底物识别的研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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