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GeauxDock: Accelerating Structure-Based Virtual Screening with Heterogeneous Computing

机译:GeauxDock:通过异构计算加速基于结构的虚拟筛选

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摘要

Computational modeling of drug binding to proteins is an integral component of direct drug design. Particularly, structure-based virtual screening is often used to perform large-scale modeling of putative associations between small organic molecules and their pharmacologically relevant protein targets. Because of a large number of drug candidates to be evaluated, an accurate and fast docking engine is a critical element of virtual screening. Consequently, highly optimized docking codes are of paramount importance for the effectiveness of virtual screening methods. In this communication, we describe the implementation, tuning and performance characteristics of GeauxDock, a recently developed molecular docking program. GeauxDock is built upon the Monte Carlo algorithm and features a novel scoring function combining physics-based energy terms with statistical and knowledge-based potentials. Developed specifically for heterogeneous computing platforms, the current version of GeauxDock can be deployed on modern, multi-core Central Processing Units (CPUs) as well as massively parallel accelerators, Intel Xeon Phi and NVIDIA Graphics Processing Unit (GPU). First, we carried out a thorough performance tuning of the high-level framework and the docking kernel to produce a fast serial code, which was then ported to shared-memory multi-core CPUs yielding a near-ideal scaling. Further, using Xeon Phi gives 1.9× performance improvement over a dual 10-core Xeon CPU, whereas the best GPU accelerator, GeForce GTX 980, achieves a speedup as high as 3.5×. On that account, GeauxDock can take advantage of modern heterogeneous architectures to considerably accelerate structure-based virtual screening applications. GeauxDock is open-sourced and publicly available at and .
机译:药物与蛋白质结合的计算模型是直接药物设计不可或缺的组成部分。特别是,基于结构的虚拟筛选通常用于对小有机分子与其药理相关的蛋白质靶标之间的推定关联进行大规模建模。由于要评估的候选药物很多,因此准确,快速的对接引擎是虚拟筛选的关键要素。因此,高度优化的对接代码对于虚拟筛选方法的有效性至关重要。在本次交流中,我们描述了最近开发的分子对接程序GeauxDock的实现,调整和性能特征。 GeauxDock建立在蒙特卡洛算法的基础上,具有新颖的评分功能,将基于物理的能量项与基于统计和基于知识的势能结合在一起。当前版本的GeauxDock是专为异构计算平台开发的,可以部署在现代的多核中央处理器(CPU)以及大规模并行加速器,英特尔至强融核和NVIDIA图形处理单元(GPU)上。首先,我们对高级框架和对接内核进行了彻底的性能调整,以生成快速的串行代码,然后将其移植到共享内存的多核CPU中,从而实现了近乎理想的扩展。此外,使用Xeon Phi与双10核Xeon CPU相比,性能提高了1.9倍,而最好的GPU加速器GeForce GTX 980的速度提高了3.5倍。因此,GeauxDock可以利用现代异构体系结构显着加速基于结构的虚拟筛选应用程序。 GeauxDock是开源的,可通过和公开获得。

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