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Molecular dynamics simulations of protein folding from the transition state

机译:过渡态蛋白质折叠的分子动力学模拟

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Putative transition-state ensemble (TSE) conformations of src SH3 were identified by monitoring the deviation from the experimental φ values along molecular dynamics (MD) simulations of unfolding. Sixty MD trajectories (for a total of about 7 μs) were then started from the putative TSE. About one-half of the 60 runs reached the folded state while unfolding was observed in the remaining half of the runs. This result validates φ-value analysis as an approach to obtain structural information on the transition state. It also demonstrates that an atomic resolution description of the TSE can be extracted from MD simulations. All conformations in the TSE have the central three-stranded β-sheet formed in agreement with experimental data. An elongation of strand β2 as well as nonnative side-chain interactions between the diverging turn and the distal hairpin are observed. The simulation results indicate that the tight packing of the side chains between the diverging turn and the distal hairpin is a necessary condition for rapid folding. Contacts between residues in the most structured element of the TSE, the central β-sheet, are kinetically more important than those between the N- and C-terminal strands.
机译:src SH3的推定过渡态整体(TSE)构象通过沿着展开的分子动力学(MD)模拟监测与实验φ值的偏差来确定。然后从假定的TSE开始60条MD轨迹(总计约7 s)。 60条滑道中约有一半达到了折叠状态,而在其余一半的滑道中观察到了展开。该结果验证了φ值分析作为获取过渡状态结构信息的一种方法。它还表明,可以从MD模拟中提取TSE的原子分辨率描述。 TSE中的所有构象均具有与实验数据一致的中央三链β-折叠。观察到链β2的伸长以及发散转弯和远侧发夹之间的非天然侧链相互作用。仿真结果表明,发散弯头与远侧发夹之间侧链的紧密堆积是快速折叠的必要条件。 TSE最结构化元素中的残基之间的接触(中央β折叠)在动力学上比N端链和C端链之间的接触更重要。

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