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Dynamics of alpha helix formation in the CSAW model

机译:CSAW模型中α螺旋形成的动力学

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We study the folding dynamics of polyalanine (Ala(20)), a protein fragment with 20 residues whose native state is a single alpha helix. We use the CSAW model (conditioned self-avoiding walk), which treats the protein molecule as a chain in Brownian motion, with interactions that include hydrophobic force and internal hydrogen bonding. We find that large-scale structures form before small-scale structures, and obtain the relevant relaxation times. We find that helix nucleation occurs at two separate points on the protein chain, one near each end. The evolution of small- and large-scale structures involves different mechanisms. While the former can be described by rate equations that govern the growth of helical content, the latter is akin to the relaxation of an elastic solid.
机译:我们研究了聚丙氨酸(Ala(20))的折叠动力学,该蛋白质具有20个残基,其天然状态是单个α螺旋。我们使用CSAW模型(有条件的自我规避步行),该模型将蛋白质分子视为布朗运动中的一条链,相互作用包括疏水力和内部氢键。我们发现,大型结构先于小型结构形成,并获得了相关的弛豫时间。我们发现螺旋形成核作用发生在蛋白质链上的两个独立点,每个末端附近一个。小型和大型结构的演变涉及不同的机制。前者可以通过控制螺旋含量增长的速率方程来描述,而后者类似于弹性固体的松弛。

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