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Constructing verifying and dissecting the folding transition state of chymotrypsin inhibitor 2 with all-atom simulations

机译:用全原子模拟构建验证和分析胰凝乳蛋白酶抑制剂2的折叠过渡状态

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摘要

Experimentally, protein engineering and φ-value analysis is the method of choice to characterize the structure in folding transition state ensemble (TSE) of any protein. Combining experimental φ values and computer simulations has led to a deeper understanding of how proteins fold. In this report, we construct the TSE of chymotrypsin inhibitor 2 from published φ values. Importantly, we verify, by means of multiple independent simulations, that the conformations in the TSE have a probability of ≈0.5 to reach the native state rapidly, so the TSE consists of true transition states. This finding validates the use of transition state theory underlying all φ-value analyses. Also, we present a method to dissect and study the TSE by generating conformations that have a disrupted α-helix (α-disrupted states) or disordered β-strands 3 and 4 (β-disrupted states). Surprisingly, the α-disrupted states have a stronger tendency to fold than the β-disrupted states, despite the higher φ values for the α-helix in the TSE. We give a plausible explanation for this result and discuss its implications on protein folding and design. Our study shows that, by using both experiments and computer simulations, we can gain many insights into protein folding.
机译:在实验上,蛋白质工程和φ值分析是表征任何蛋白质的折叠过渡态整体(TSE)中结构的选择方法。将实验φ值与计算机模拟相结合,已经使人们对蛋白质如何折叠有了更深入的了解。在本报告中,我们根据发表的φ值构建了胰凝乳蛋白酶抑制剂2的TSE。重要的是,我们通过多次独立的仿真验证了TSE中的构象具有≈0.5的概率迅速到达原始状态的可能性,因此TSE由真实的过渡状态组成。这一发现验证了所有φ值分析基础上的过渡态理论的使用。此外,我们提出了一种通过生成具有破坏性的α-螺旋(α破坏状态)或无序的β链3和4(破坏性的β)的构象来剖析和研究TSE的方法。出乎意料的是,尽管TSE中α-螺旋的φ值较高,但α破坏态比β破坏态具有更强的折叠趋势。我们对此结果给出一个合理的解释,并讨论其对蛋白质折叠和设计的影响。我们的研究表明,通过同时使用实验和计算机模拟,我们可以获得有关蛋白质折叠的许多见解。

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