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使用 r(GACC)四核苷酸对标 Drude 极化力场。

Benchmarking the Drude Polarizable Force Field Using the r(GACC) Tetranucleotide.

机构信息

Department of Medicinal Chemistry, College of Pharmacy, University of Utah, 2000 East 30 South Skaggs 306, Salt Lake City, Utah 84112, United States.

出版信息

J Chem Inf Model. 2023 Apr 24;63(8):2505-2511. doi: 10.1021/acs.jcim.3c00250. Epub 2023 Mar 30.

Abstract

Polarizable force fields, in particular, the Drude polarizable force field (Drude FF), may hold the key to more accurately modeling biomolecules with molecular dynamics simulations by explicitly accounting for atomic polarizability. Previous work has shown promising results in simulating duplex nucleic acids and protein structures with excellent agreement with experimental values. However, benchmarking the Drude polarizable force field with highly flexible, single-stranded structures has yet to be achieved. In this work, the r(GACC) tetranucleotide is simulated over a multimicrosecond time scale, starting with various different initial conformations. Despite the starting conformation, including starting from the expected dominant A-form major conformation, the experimental structural distribution is not matched. In fact, the major NMR conformation is never resampled. Instead, the r(GACC) tetranucleotide becomes stabilized in anomalous structures that are inconsistent with the NMR data and that favor base-pairing and electrostatic interactions over base stacking. These structures are maintained for lengthy time scales (>1 μs) themselves, suggesting a misbalance of forces in the Drude polarizable force field itself. This model system is suggestive of the fact that currently the Drude polarizable force field does not appear to produce the sensitive balance of forces required to accurately model other single-stranded or noncanonical RNA structures.

摘要

极化力场,特别是 Drude 极化力场(Drude FF),通过明确考虑原子极化率,可能是更准确地对生物分子进行分子动力学模拟的关键。先前的工作已经在模拟双链核酸和蛋白质结构方面取得了有希望的结果,与实验值具有极好的一致性。然而,用高度灵活的单链结构来基准测试 Drude 极化力场的工作尚未完成。在这项工作中,r(GACC)四核苷酸在多微秒的时间尺度上进行模拟,起始于各种不同的初始构象。尽管起始构象包括从预期的主导 A 型主要构象开始,但实验结构分布并不匹配。事实上,主要 NMR 构象从未被重新抽样。相反,r(GACC)四核苷酸变得稳定在异常结构中,这些结构与 NMR 数据不一致,并且有利于碱基配对和静电相互作用而不是碱基堆积。这些结构本身可以维持很长的时间尺度(>1 μs),表明 Drude 极化力场本身的力不平衡。这个模型系统表明,目前 Drude 极化力场似乎无法产生准确模拟其他单链或非规范 RNA 结构所需的敏感力平衡。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b1a3/10131218/23fd95959a07/ci3c00250_0002.jpg

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