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The Fast-Folding Mechanism of Vil'lin Headpiece Subdomain Studied by Multiscale Distributed Computing

机译:多尺度分布式计算研究维尔林头饰子域的快速折叠机制

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摘要

The fast-folding mechanism of a 35-residue mini-protein, villin headpiece subdomain (HP35), was investigated using folding free energy landscape analysis with the multiscale free energy landscape calculation method (MSFEL). A major and a minor folding pathway were deduced from the folding free energy landscape. In the major folding pathway, the formation of helices II and III was the rate-limiting step in the transition to an intermediate state, triggered by the folding of the PLWK motif. HP3S then folds into the native structure through the formation of the hydrophobic core located at the center of the three-helix bundle. Mutations in the motif and hydrophobic core that suppressed folding into the native state drastically changed the folding free energy landscape compared to the wild type protein. In the minor folding pathway, nucleation of the hydrophobic core preceded formation of the motif.
机译:使用折叠自由能态分析和多尺度自由能态计算方法(MSFEL),研究了35个残基的小蛋白villin头域(HP35)的快速折叠机制。从折叠自由能态推导了主要和次要折叠路径。在主要的折叠途径中,螺旋II和III的形成是过渡到中间状态的限速步骤,由PLWK基序的折叠触发。然后,HP3S通过形成位于三螺旋束中心的疏水核折叠成天然结构。与野生型蛋白相比,抑制折叠成天然状态的基序和疏水核心突变大大改变了折叠自由能态。在次要折叠途径中,疏水核的成核先于基序的形成。

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