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Dynameomics: A Consensus View of the Protein Unfolding/Folding Transition State Ensemble across a Diverse Set of Protein Folds

机译:遗传学:蛋白质折叠/折叠过渡状态集合在蛋白质折叠的不同集合上的共识性看法。

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摘要

The Dynameomics project aims to simulate a representative sample of all globular protein metafolds under both native and unfolding conditions. We have identified protein unfolding transition state (TS) ensembles from multiple molecular dynamics simulations of high-temperature unfolding in 183 structurally distinct proteins. These data can be used to study individual proteins and individual protein metafolds and to mine for TS structural features common across all proteins. Separating the TS structures into four different fold classes (all proteins, all-α, all-β, and mixed α/β and α + β) resulted in no significant difference in the overall protein properties. The residues with the most contacts in the native state lost the most contacts in the TS ensemble. On average, residues beginning in an α-helix maintained more structure in the TS ensemble than did residues starting in β-strands or any other conformation. The metafolds studied here represent 67% of all known protein structures, and this is, to our knowledge, the largest, most comprehensive study of the protein folding/unfolding TS ensemble to date. One might have expected broad distributions in the average global properties of the TS relative to the native state, indicating variability in the amount of structure present in the TS. Instead, the average global properties converged with low standard deviations across metafolds, suggesting that there are general rules governing the structure and properties of the TS.
机译:Dynameomics项目旨在模拟天然和未折叠条件下所有球状蛋白元折叠的代表性样本。我们已经从183种结构独特的蛋白质中高温展开的多个分子动力学模拟中确定了蛋白质展开过渡状态(TS)集合。这些数据可用于研究单个蛋白和单个蛋白的元折叠,并挖掘所有蛋白共有的TS结构特征。将TS结构分为四个不同的折叠类别(所有蛋白质,全α,全β以及混合的α/β和α+β)导致总体蛋白质特性无明显差异。在原始状态下,具有最多接触的残基失去了最大的接触。平均而言,以α-螺旋开始的残基在TS集合中比以β链或任何其他构象开始的残基保持更多的结构。在这里研究的元折叠代表了所有已知蛋白质结构的67%,据我们所知,这是迄今为止蛋白质折叠/展开TS集成的最大,最全面的研究。人们可能已经预料到TS相对于原始状态在TS的平均全局特性中会有广泛的分布,这表明TS中存在的结构量存在变化。取而代之的是,平均全局属性收敛于元折叠的低标准偏差,这表明存在控制TS结构和属性的一般规则。

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