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首页> 外文期刊>Journal of chemical theory and computation: JCTC >Simulating Water Exchange to Buried Binding Sites
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Simulating Water Exchange to Buried Binding Sites

机译:模拟水交换到埋藏的结合位点

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Traditional molecular dynamics (MD) simulations of proteins, which relies on integration of Newton's equations of motion, cannot efficiently equilibrate water occupancy for buried cavities in proteins. This leads to slow convergence of thermodynamic averages for such systems. We have addressed this challenge by efficiently integrating standard Metropolis Monte Carlo (MC) translational water moves with MD in the AMBER simulation package. The translational moves allow water to easily enter or exit buried sites in a thermodynamically correct way during a simulation. To maximize efficiency, the algorithm avoids moves that only interchange waters within the bulk around the protein instead focusing on moves that can transfer water between bulk and the protein interior. In addition, a steric grid allows avoidance of moves that would lead to obvious steric clashes, and a fast grid-based energy evaluation is used to reduce the number of expensive full energy calculations. The potential energy distribution produced using MC/MD was found to be statistically indistinguishable from that of control simulations using only MD, and the algorithm effectively equilibrated water across steric barriers and into binding pockets that are not accessible with pure MD. The MC/MD method introduced here should be of increasing utility for applications spanning protein folding, the elucidation of protein mechanisms, and free energy calculations for computer-aided drug design. It is available in version 18 release of the widely disseminated AMBER simulation package.
机译:蛋白质的传统分子动力学(MD)模拟,依赖于牛顿运动方程的整合,不能有效地平衡蛋白质中埋地腔的水占用。这导致这种系统的热力学平均会聚缓慢。我们通过高效地集成了琥珀色仿真包中的MD。平移移动允许水在模拟期间以热力学上正确的方式轻松进入或退出埋地的部位。为了最大限度地提高效率,该算法避免了仅在蛋白质周围的散装内交换水的移动,而是聚焦在可以在散装和蛋白质内部之间转移水的移动。此外,空间网格允许避免将导致明显的空间冲突的移动,并且使用快速的基于网格的能量评估来减少昂贵的全能量计算的数量。发现使用MC / MD产生的潜在能量分布在仅使用MD的控制模拟的统计上难以区分,并且该算法在空间屏障上有效地平衡水,并进入纯MD不可访问的绑定口袋。本文介绍的MC / MD方法应该是跨越蛋白折叠的应用,蛋白质机制的阐明和用于计算机辅助药物设计的自由能计算的效用。它可以在版本18版本中提供广泛传播的琥珀色仿真包。

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