Chen Changjun
Biomolecular Physics and Modeling Group, School of Physics, Huazhong University of Science and Technology, Wuhan, Hubei, 430074, China.
J Comput Chem. 2017 Oct 15;38(27):2298-2306. doi: 10.1002/jcc.24881. Epub 2017 Jul 18.
Complete free energy surface in the collective variable space provides important information of the reaction mechanisms of the molecules. But, sufficient sampling in the collective variable space is not easy. The space expands quickly with the number of the collective variables. To solve the problem, many methods utilize artificial biasing potentials to flatten out the original free energy surface of the molecule in the simulation. Their performances are sensitive to the definitions of the biasing potentials. Fast-growing biasing potential accelerates the sampling speed but decreases the accuracy of the free energy result. Slow-growing biasing potential gives an optimized result but needs more simulation time. In this article, we propose an alternative method. It adds the biasing potential to a representative point of the molecule in the collective variable space to improve the conformational sampling. And the free energy surface is calculated from the free energy gradient in the constrained simulation, not given by the negative of the biasing potential as previous methods. So the presented method does not require the biasing potential to remove all the barriers and basins on the free energy surface exactly. Practical applications show that the method in this work is able to produce the accurate free energy surfaces for different molecules in a short time period. The free energy errors are small in the cases of various biasing potentials. © 2017 Wiley Periodicals, Inc.
集体变量空间中的完整自由能面提供了分子反应机制的重要信息。但是,在集体变量空间中进行充分采样并不容易。该空间会随着集体变量数量的增加而迅速扩展。为了解决这个问题,许多方法在模拟中利用人工偏置势来展平分子的原始自由能面。它们的性能对偏置势的定义很敏感。快速增长的偏置势会加快采样速度,但会降低自由能结果的准确性。缓慢增长的偏置势能给出优化结果,但需要更多的模拟时间。在本文中,我们提出了一种替代方法。它将偏置势添加到集体变量空间中分子的一个代表点上,以改善构象采样。并且自由能面是根据受限模拟中的自由能梯度计算得出的,而不是像以前的方法那样由偏置势的负值给出。所以本文提出的方法并不要求偏置势精确地消除自由能面上所有的势垒和势阱。实际应用表明,本文中的方法能够在短时间内为不同分子生成准确的自由能面。在各种偏置势的情况下,自由能误差都很小。© 2017威利期刊公司