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首页> 外文期刊>The Journal of Chemical Physics >Consistent free energy landscapes and thermodynamic properties of small proteins based on a single all-atom force field employing an implicit solvation
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Consistent free energy landscapes and thermodynamic properties of small proteins based on a single all-atom force field employing an implicit solvation

机译:基于隐式溶剂化的单个全原子力场,一致的小蛋白质自由能态和热力学性质

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摘要

We have attempted to improve the PARAM99 force field in conjunction with the generalized Born (GB) solvation model with a surface area correction for more consistent protein folding simulations. For this purpose, using an extended alpha/beta training set of five well-studied molecules with various folds (alpha, beta, and beta beta alpha), a previously modified version of PARAM99/GBSA is further refined, such that all native states of the five training species correspond to their lowest free energy minimum states. The resulting modified force field (PARAM99MOD5/GBSA) clearly produces reasonably acceptable conformational free energy surfaces of the training set with correct identifications of their native states in the free energy minimum states. Moreover, due to its well-balanced nature, this new force field is expected to describe secondary structure propensities of diverse folds in a more consistent manner. Remarkably, temperature dependent behaviors simulated with the current force field are in good agreement with the experiment. This agreement is a significant improvement over the existing standard all-atom force fields. In addition, fundamentally important thermodynamic quantities, such as folding enthalpy (DELTA H) and entropy (DELTA S), agree reasonably well with the experimental data.
机译:我们已尝试通过结合表面积校正的广义Born(GB)溶剂化模型来改善PARAM99力场,以进行更一致的蛋白质折叠模拟。为此,使用扩展的alpha / beta训练集,其中包含五个经过广泛研究的,具有不同倍数的分子(alpha,beta和beta beta alpha),进一步完善了PARAM99 / GBSA的先前修改版本,以使所有自然状态为这五个训练物种对应于它们的最低自由能最小状态。产生的修改后的力场(PARAM99MOD5 / GBSA)清楚地产生了训练集的合理可接受的构象自由能表面,并正确标识了其在最小自由能状态下的原始状态。此外,由于其良好的平衡特性,该新的力场有望以更一致的方式描述不同褶皱的二级结构倾向。值得注意的是,用电流力场模拟的温度相关行为与实验非常吻合。该协议是对现有标准全原子力场的重大改进。另外,根本重要的热力学量,例如折叠焓(ΔH)和熵(ΔS),与实验数据相当吻合。

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