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MD-Ligand-Receptor:一种用于在分子动力学轨迹中描述配体-受体结合相互作用的高性能计算工具。

MD-Ligand-Receptor: A High-Performance Computing Tool for Characterizing Ligand-Receptor Binding Interactions in Molecular Dynamics Trajectories.

机构信息

Department of Computer Science, "Sapienza" University of Rome, V. le Regina Elena 295, 00161 Rome, Italy.

Department of Ecological and Biological Sciences, Tuscia University, Viale dell'Università s.n.c., 01100 Viterbo, Italy.

出版信息

Int J Mol Sci. 2023 Jul 19;24(14):11671. doi: 10.3390/ijms241411671.

Abstract

Molecular dynamics simulation is a widely employed computational technique for studying the dynamic behavior of molecular systems over time. By simulating macromolecular biological systems consisting of a drug, a receptor and a solvated environment with thousands of water molecules, MD allows for realistic ligand-receptor binding interactions (lrbi) to be studied. In this study, we present MD-ligand-receptor (MDLR), a state-of-the-art software designed to explore the intricate interactions between ligands and receptors over time using molecular dynamics trajectories. Unlike traditional static analysis tools, MDLR goes beyond simply taking a snapshot of ligand-receptor binding interactions (lrbi), uncovering long-lasting molecular interactions and predicting the time-dependent inhibitory activity of specific drugs. With MDLR, researchers can gain insights into the dynamic behavior of complex ligand-receptor systems. Our pipeline is optimized for high-performance computing, capable of efficiently processing vast molecular dynamics trajectories on multicore Linux servers or even multinode HPC clusters. In the latter case, MDLR allows the user to analyze large trajectories in a very short time. To facilitate the exploration and visualization of lrbi, we provide an intuitive Python notebook (Jupyter), which allows users to examine and interpret the results through various graphical representations.

摘要

分子动力学模拟是一种广泛应用的计算技术,用于研究分子系统随时间的动态行为。通过模拟由药物、受体和溶剂化环境组成的大分子生物系统,其中包含数千个水分子,MD 可以研究现实的配体-受体结合相互作用 (lrbi)。在这项研究中,我们提出了 MD-配体-受体 (MDLR),这是一种最先进的软件,旨在使用分子动力学轨迹探索配体和受体之间随时间的复杂相互作用。与传统的静态分析工具不同,MDLR 不仅仅是简单地捕捉配体-受体结合相互作用 (lrbi),而是揭示持久的分子相互作用,并预测特定药物的时间依赖性抑制活性。使用 MDLR,研究人员可以深入了解复杂的配体-受体系统的动态行为。我们的管道针对高性能计算进行了优化,能够在多核 Linux 服务器甚至多节点 HPC 集群上高效处理大量分子动力学轨迹。在后一种情况下,MDLR 允许用户在很短的时间内分析大型轨迹。为了方便 lrbi 的探索和可视化,我们提供了一个直观的 Python 笔记本 (Jupyter),允许用户通过各种图形表示来检查和解释结果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4fef/10380688/4bdd50c668ac/ijms-24-11671-g001.jpg

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