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Complex Pathways in Folding of Protein G Explored by Simulation and Experiment

机译:通过模拟和实验探索蛋白质G折叠的复杂途径

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摘要

The B1 domain of protein G has been a classic model system of folding for decades, the subject of numerous experimental and computational studies. Most of the experimental work has focused on whether the protein folds via an intermediate, but the evidence is mostly limited to relatively slow kinetic observations with a few structural probes. In this work we observe folding on the submillisecond timescale with microfluidic mixers using a variety of probes including tryptophan fluorescence, circular dichroism, and photochemical oxidation. We find that each probe yields different kinetics and compare these observations with a Markov State Model constructed from large-scale molecular dynamics simulations and find a complex network of states that yield different kinetics for different observables. We conclude that there are many folding pathways before the final folding step and that these paths do not have large free energy barriers.
机译:数十年来,蛋白质G的B1结构域一直是经典的折叠模型系统,是众多实验和计算研究的主题。大多数实验工作都集中在蛋白质是否通过中间体折叠上,但是证据主要限于用一些结构探针进行相对较慢的动力学观察。在这项工作中,我们使用微探针混合器,使用色氨酸荧光,圆二色性和光化学氧化等多种探针,在亚毫秒级的时间尺度上观察到了折叠。我们发现每个探针产生不同的动力学,并将这些观察结果与由大规模分子动力学模拟构建的马尔可夫状态模型进行比较,并发现一个复杂的状态网络,为不同的观测值产生不同的动力学。我们得出结论,在最后的折叠步骤之前有许多折叠路径,并且这些路径没有较大的自由能垒。

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