Szymczak P, Cieplak Marek
Institute of Theoretical Physics, Warsaw University, ul. Hoza 69, 00-681 Warsaw, Poland.
J Chem Phys. 2007 Oct 21;127(15):155106. doi: 10.1063/1.2795725.
The conformational dynamics of a single protein molecule in a shear flow is investigated using Brownian dynamics simulations. A structure-based coarse grained model of a protein is used. We consider two proteins, ubiquitin and integrin, and find that at moderate shear rates they unfold through a sequence of metastable states-a pattern which is distinct from a smooth unraveling found in homopolymers. Full unfolding occurs only at very large shear rates. Furthermore, the hydrodynamic interactions between the amino acids are shown to hinder the shear flow unfolding. The characteristics of the unfolding process depend on whether a protein is anchored or not, and if it is, on the choice of an anchoring point.
利用布朗动力学模拟研究了剪切流中单个蛋白质分子的构象动力学。使用了基于结构的蛋白质粗粒化模型。我们考虑了两种蛋白质,泛素和整合素,发现在中等剪切速率下它们通过一系列亚稳态展开——这种模式不同于在均聚物中发现的平滑解链。完全展开仅在非常大的剪切速率下发生。此外,氨基酸之间的流体动力学相互作用被证明会阻碍剪切流展开。展开过程的特征取决于蛋白质是否被锚定,如果被锚定,则取决于锚定点的选择。