首页> 外文期刊>Journal of chemical theory and computation: JCTC >Protein Folding Free Energy Landscape along the Committor - the Optimal Folding Coordinate
【24h】

Protein Folding Free Energy Landscape along the Committor - the Optimal Folding Coordinate

机译:蛋白质折叠自由能量景观沿着专家 - 最佳折叠坐标

获取原文
获取原文并翻译 | 示例
           

摘要

Recent advances in simulation and experiment have led to dramatic increases in the quantity and complexity of produced data, which makes the development of automated analysis tools very important. A powerful approach to analyze dynamics contained in such data sets is to describe/approximate it by diffusion on a free energy landscape - free energy as a function of reaction coordinates (RC). For the description to be quantitatively accurate, RCs should be chosen in an optimal way. Recent theoretical results show that such an optimal RC exists; however, determining it for practical systems is a very difficult unsolved problem. Here we describe a solution to this problem. We describe an adaptive nonparametric approach to accurately determine the optimal RC (the committor) for an equilibrium trajectory of a realistic system. In contrast to alternative approaches, which require a functional form with many parameters to approximate an RC and thus extensive expertise with the system, the suggested approach is nonparametric and can approximate any RC with high accuracy without system specific information. To avoid overfitting for a realistically sampled system, the approach performs RC optimization in an adaptive manner by focusing optimization on less optimized spatiotemporal regions of the RC. The power of the approach is illustrated on a long equilibrium atomistic folding simulation of HP35 protein. We have determined the optimal folding RC - the committor, which was confirmed by passing a stringent committor validation test. It allowed us to determine a first quantitatively accurate protein folding free energy landscape. We have confirmed the recent theoretical results that diffusion on such a free energy profile can be used to compute exactly the equilibrium flux, the mean first passage times, and the mean transition path times between any two points on the profile. We have shown that the mean squared displacement along the optimal RC grows linear with time as for simple diffusion. The free energy profile allowed us to obtain a direct rigorous estimate of the pre-exponential factor for the folding dynamics.
机译:仿真和实验的最新进展导致生产数据的数量和复杂性的显着增加,这使得自动化分析工具的发展非常重要。一种强大的方法来分析这些数据集中包含的动态的方法是通过在自由能横向的能量上以反应坐标(RC)的函数来描述/近似。对于要定量准确的描述,应以最佳方式选择RC。最近的理论结果表明,存在这种最佳RC;然而,为实际系统确定它是一个非常困难的未解决问题。在这里,我们描述了解决这个问题的解决方案。我们描述了一种自适应的非参数方法来准确地确定最佳RC(专家),用于了解现实系统的平衡轨迹。与替代方法相比,这需要具有许多参数的功能形式来近似RC以及对系统进行广泛的专业知识,所提出的方法是非参数,并且可以高精度地近似任何RC,没有系统特定信息。为了避免对现实采样系统的过度装饰,该方法通过对RC的较少优化的时空区域的优化来实现A自适应方式进行RC优化。在HP35蛋白的长平衡原子折叠模拟上说明了该方法的力量。我们已经确定了最佳折叠RC - 通过通过严格的专门验证测试确认。它使我们可以确定第一定量准确的蛋白质折叠自由能量景观。我们已经确认了最近的理论结果,即在这种自由能曲线上扩散可以用于计算平衡磁通量,平均第一通道和轮廓上的任何两个点之间的平均转换路径时间。我们已经表明,沿着最佳RC的平均平方位移随着时间的时间而导致的时间增加。自由能量分布允许我们获得对折叠动态的预指数因子的直接严格估计。

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