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Looping and reconfiguration dynamics of a flexible chain with internal friction

机译:具有内部摩擦的柔性链的循环和重新配置动力学

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摘要

In recent past, experiments and simulations have suggested that apart from the solvent friction, friction arising from the protein itself plays an important role in protein folding by affecting the intra-chain loop formation dynamics. This friction is termed as internal friction in the literature. Using a flexible Gaussian chain with internal friction we analyze the intra-chain reconfiguration and loop formation times for all three topology classes namely end-to-end, end-to-interior and interior-to-interior. In a nutshell, bypassing expensive simulations we show how simple models like that of Rouse and Zimm can support the single molecule experiment and computer simulation results on intra-chain diffusion coefficients, looping time and even can predict the effects of tail length on the looping time.
机译:最近,实验和模拟表明,除溶剂摩擦外,蛋白质本身产生的摩擦通过影响链内环形成动力学而在蛋白质折叠中起重要作用。在文献中将该摩擦称为内部摩擦。使用具有内部摩擦力的柔性高斯链,我们分析了所有三种拓扑类型的链内重构和环形成时间,即端到端,端到内部和内部到内部。简而言之,我们绕过了昂贵的模拟,我们展示了像Rouse和Zimm这样的简单模型如何支持单分子实验和计算机模拟结果,包括链内扩散系数,循环时间,甚至可以预测尾部长度对循环时间的影响。

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