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Validity of Gō models: comparison with a solvent-shielded empirical energy decomposition.

机译:Gō模型的有效性:与溶剂保护的经验能量分解的比较。

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摘要

Do Gō-type model potentials provide a valid approach for studying protein folding? They have been widely used for this purpose because of their simplicity and the speed of simulations based on their use. The essential assumption in such models is that only contact interactions existing in the native state determine the energy surface of a polypeptide chain, even for non-native configurations sampled along folding trajectories. Here we use an all-atom molecular mechanics energy function to investigate the adequacy of Gō-type potentials. We show that, although the contact approximation is accurate, non-native contributions to the energy can be significant. The assumed relation between residue-residue interaction energies and the number of contacts between them is found to be only approximate. By contrast, individual residue energies correlate very well with the number of contacts. The results demonstrate that models based on the latter should give meaningful results (e.g., as used to interpret phi values), whereas those that depend on the former are only qualitative, at best.
机译:Gō型模型势能提供研究蛋白质折叠的有效方法吗?由于其简单性以及基于其使用的仿真速度,它们已被广泛用于此目的。在这种模型中的基本假设是,即使沿折叠轨迹采样的非天然构型,只有天然状态下的接触相互作用才能确定多肽链的能量表面。在这里,我们使用全原子分子力学能量函数来研究Gō型势能的充分性。我们表明,尽管接触近似是准确的,但对能量的非本征贡献可能很大。发现残基-残基相互作用能与它们之间的接触数之间的假定关系仅仅是近似的。相比之下,单个残基能量与触点数量非常相关。结果表明,基于后者的模型应该给出有意义的结果(例如,用于解释phi值),而依赖于前者的模型充其量只是定性的。

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