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Weighted Ensemble Simulation: Review of Methodology, Applications, and Software
Annual Review of Biophysics ( IF 10.4 ) Pub Date : 2017-05-22 00:00:00 , DOI: 10.1146/annurev-biophys-070816-033834
Daniel M Zuckerman 1 , Lillian T Chong 2
Affiliation  

The weighted ensemble (WE) methodology orchestrates quasi-independent parallel simulations run with intermittent communication that can enhance sampling of rare events such as protein conformational changes, folding, and binding. The WE strategy can achieve superlinear scaling—the unbiased estimation of key observables such as rate constants and equilibrium state populations to greater precision than would be possible with ordinary parallel simulation. WE software can be used to control any dynamics engine, such as standard molecular dynamics and cell-modeling packages. This article reviews the theoretical basis of WE and goes on to describe successful applications to a number of complex biological processes—protein conformational transitions, (un)binding, and assembly processes, as well as cell-scale processes in systems biology. We furthermore discuss the challenges that need to be overcome in the next phase of WE methodological development. Overall, the combined advances in WE methodology and software have enabled the simulation of long-timescale processes that would otherwise not be practical on typical computing resources using standard simulation.

中文翻译:



加权集成仿真:方法、应用和软件回顾



加权集成 (WE) 方法协调通过间歇性通信运行的准独立并行模拟,可以增强对蛋白质构象变化、折叠和结合等罕见事件的采样。 WE 策略可以实现超线性缩放,即对速率常数和平衡状态总体等关键可观测值进行无偏估计,其精度比普通并行模拟更高。 WE 软件可用于控制任何动力学引擎,例如标准分子动力学和细胞建模软件包。本文回顾了 WE 的理论基础,并继续描述了其在许多复杂生物过程中的成功应用——蛋白质构象转变、(解除)结合和组装过程,以及系统生物学中的细胞规模过程。我们还讨论了 WE 方法论发展下一阶段需要克服的挑战。总体而言,WE 方法和软件的综合进步使得能够模拟长时间尺度的过程,否则使用标准模拟在典型的计算资源上是不可行的。

更新日期:2017-05-22
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