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Two-state expansion and collapse of a polypeptide.

机译:多肽的二态扩展和折叠。

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The initial phase of folding for many proteins is presumed to be the collapse of the polypeptide chain from expanded to compact, but still denatured, conformations. Theory and simulations suggest that this collapse may be a two-state transition, characterized by barrier-crossing kinetics, while the collapse of homopolymers is continuous and multi-phasic. We have used a laser temperature-jump with fluorescence spectroscopy to measure the complete time-course of the collapse of denatured cytochrome c with nanosecond time resolution. We find the process to be exponential in time and thermally activated, with an apparent activation energy approximately 9 k(B)T (after correction for solvent viscosity). These results indicate that polypeptide collapse is kinetically a two-state transition. Because of the observed free energy barrier, the time scale of polypeptide collapse is dramatically slower than is predicted by Langevin models for homopolymer collapse.
机译:据推测,许多蛋白质折叠的初始阶段是多肽链从扩增到紧缩但仍然变性的构象的崩溃。理论和模拟表明,这种塌陷可能是两态跃迁,其特征是穿过势垒的动力学,而均聚物的塌陷是连续且多相的。我们已经使用了具有荧光光谱的激光温度跳跃技术,以纳秒级的时间分辨率测量了变性细胞色素c崩溃的完整时间过程。我们发现该过程在时间上是指数的并且被热活化,具有大约9 k(B)T的表观活化能(校正溶剂粘度后)。这些结果表明多肽塌陷在动力学上是两个状态的过渡。由于观察到的自由能垒,多肽崩溃的时间尺度比Langevin模型预测的均聚物崩溃要慢得多。

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