Faccioli P, Sega M, Pederiva F, Orland H
Dipartimento di Fisica Universitá degli Studi di Trento e I.N.F.N, Via Sommarive 14, Povo (Trento), I-38050 Italy.
Phys Rev Lett. 2006 Sep 8;97(10):108101. doi: 10.1103/PhysRevLett.97.108101. Epub 2006 Sep 6.
We present a method to investigate the kinetics of protein folding and the dynamics underlying the formation of secondary and tertiary structures during the entire reaction. By writing the solution of the Fokker-Planck equation in terms of a path integral, we derive a Hamilton-Jacobi variational principle from which we are able to compute the most probable pathway of folding. The method is applied to the folding of the Villin headpiece subdomain simulated using a Go model. An initial collapsing phase driven by the initial configuration is followed by a rearrangement phase, in which secondary structures are formed and all computed paths display strong similarities. This completely general method does not require the prior knowledge of any reaction coordinate and is an efficient tool to perform simulations of the entire folding process with available computers.
我们提出了一种方法,用于研究蛋白质折叠动力学以及整个反应过程中二级和三级结构形成背后的动力学。通过将福克-普朗克方程的解写成路径积分的形式,我们推导出了一个哈密顿-雅可比变分原理,据此能够计算出最可能的折叠路径。该方法应用于使用Go模型模拟的维林蛋白头部亚结构域的折叠。由初始构象驱动的初始塌缩阶段之后是重排阶段,在此阶段形成二级结构,并且所有计算出的路径都显示出很强的相似性。这种完全通用的方法不需要任何反应坐标的先验知识,是利用现有计算机对整个折叠过程进行模拟的有效工具。