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COMPACTION AND FOLDING IN MODEL PROTEINS

机译:模型蛋白的压缩和折叠

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Protein folding is modeled as diffusion on a free-energy landscape, allowing use of the diffusion equation to study the impact of energetic parameters on the folding dynamics. The free-energy landscape is characterized by two different order parameters, one representing the degree of compactness, the other a measure of the progress towards the folded state. For marginally stable proteins, fastest folding is achieved when the nonspecific interactions favoring compaction are strong, resulting in a high folding temperature. Such proteins fold by rapid collapse followed by slower accumulation of correct contacts. (C) 1997 American Institute of Physics. [References: 42]
机译:蛋白质折叠被模拟为在自由能景观上的扩散,从而允许使用扩散方程来研究高能参数对折叠动力学的影响。自由能态的特征在于两个不同的阶次参数,一个代表紧密度,另一个代表对折叠状态进展的度量。对于边缘稳定的蛋白质,当有利于压实的非特异性相互作用很强时,折叠速度最快,从而导致折叠温度较高。此类蛋白质通过快速折叠而折叠,然后正确接触的累积速度变慢。 (C)1997美国物理研究所。 [参考:42]

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