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Experimental tests of villin subdomain folding simulations

机译:villin子域折叠模拟的实验测试

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摘要

We have used laser temperature-jump to investigate the kinetics and mechanism of folding the 35 residue subdomain of the villin headpiece. The relaxation kinetics are biphasic with a sub-microsecond phase corresponding to a helix-coil transition and a slower microsecond phase corresponding to overall unfolding/refolding. At 300 K, the folding time is 4.3(+/- 0.6) mus, making it the fastest folding, naturally occurring protein, with a rate close to the theoretical speed limit. This time is in remarkable agreement with the prediction of 5 (+11, - 3) mus by Zagrovic et al. from atomistic molecular dynamics simulations using an implicit solvent model. We test their prediction that replacement of the C-terminal phenylalanine residue with alanine will increase the folding rate by removing a transient non-native interaction. We find that the alanine substitution has no effect on the folding rate or on the equilibrium constant. Implications of this result for the validity of the simulated folding mechanism are discussed. Published by Elsevier Science Ltd. [References: 41]
机译:我们已经使用激光温度跳跃来研究折叠维林头戴装置的35个残留子域的动力学和机理。弛豫动力学是双相的,亚微秒相对应于螺旋-螺旋转变,而慢速微秒相对应于整体展开/复性。在300 K时,折叠时间为4.3(+/- 0.6)亩,使其成为折叠最快的天然蛋白质,其速率接近理论速度极限。这次与Zagrovic等人预测5(+11,-3)亩非常一致。使用隐式溶剂模型从原子分子动力学模拟中得到的结果。我们测试了他们的预测,即丙氨酸取代C末端苯丙氨酸残基将通过消除瞬态非天然相互作用而提高折叠速率。我们发现丙氨酸取代对折叠速率或平衡常数没有影响。讨论了该结果对模拟折叠机构有效性的影响。由Elsevier Science Ltd.发布[参考:41]。

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