首页> 外文会议>IEEE International Conference on Cloud Computing Technology and Science >A Cloud-Based Workflow Approach for Optimizing Molecular Docking Simulations of Fully-Flexible Receptor Models and Multiple Ligands
【24h】

A Cloud-Based Workflow Approach for Optimizing Molecular Docking Simulations of Fully-Flexible Receptor Models and Multiple Ligands

机译:一种基于云的工作流方法,用于优化完全柔性受体模型和多个配体的分子对接模拟

获取原文

摘要

The use of conformations achieved from MolecularDynamics (MD) simulations in docking experiments is the mostaccurate approach to simulate the natural interactions betweenreceptor and ligands at molecular environments. However, suchsimulations are computational costly and their overall executionmay become unfeasible due to the large quantities of structuralinformation needed to represent a Fully-Flexible Receptor (FFR) model. The problem is even more challenging when FFR modelsare used to perform docking-based virtual screening in a largedatabase of ligands. This study aims at developing a cloud-basedworkflow to efficiently optimize docking experiments betweena FFR model and multiple ligands in two strategic ways: bydiscarding groups of unpromising MD conformations for specificligands at docking execution time, and by exploiting on-demandresources from the Microsoft Azure cloud platform. The proposedenvironment is built on e-Science Central, which is a powerfulcloud-based workflow enactment system designed to handlescientific high-throughput tasks. As a result, we expect to reducethe number of docking experiments per ligand without affectingthe quality of the produced models and, therefore, considerablydecreasing the time consumed by docking experiments.
机译:在对接实验中,从分子上实现(MD)模拟中所达的构象是模拟分子环境中的反对和配体之间的自然相互作用的最累计方法。然而,suchsimulations是计算成本和整体executionmay由于大量structuralinformation来表示一个完全灵活的受体(FFR)模型需要变得不可行。当FFR Modelare用于在配体的LargedaTase中执行基于基于对接的虚拟筛选的FFR模型时,问题更具挑战性。本研究旨在开发基于云的Wortworkflow,以有效地优化在FFR模型和多个配体之间的对接实验,以两种战略方式:对解码执行时间的特定利义的,并且通过从Microsoft Azure Cloud平台开发的UsiqueResources,对解除MD构象的致命组合组。 。 ProposateNvironment在E-Science Central内置,它是一种强大的基于功能的工作流制定系统,旨在处理CONTICICIC的高吞吐量任务。因此,我们期望每配件减少对接实验的数量,而不会影响所产生的模型的质量,因此,扩大了对接实验所消耗的时间。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号