Northrup S H, Boles J O, Reynolds J C
Department of Chemistry, Tennessee Technological University, Cookeville 38505.
Science. 1988 Jul 1;241(4861):67-70. doi: 10.1126/science.2838904.
Brownian dynamics computer simulations of the diffusional association of electron transport proteins cytochrome c (cyt c) and cytochrome c peroxidase (cyt c per) were performed. A highly detailed and realistic model of the protein structures and their electrostatic interactions was used that was based on an atomic-level spatial description. Several structural features played a role in enhancing and optimizing the electron transfer efficiency of this reaction. Favorable electrostatic interactions facilitated long-lived nonspecific encounters between the proteins that allowed the severe orientational criteria for reaction to be overcome by rotational diffusion during encounters. Thus a "reduction-in-dimensionality" effect operated. The proteins achieved plausible electron transfer orientations in a multitude of electrostatically stable encounter complexes, rather than in a single dominant complex.
进行了电子传输蛋白细胞色素c(cyt c)和细胞色素c过氧化物酶(cyt c per)扩散缔合的布朗动力学计算机模拟。使用了基于原子水平空间描述的蛋白质结构及其静电相互作用的高度详细和逼真的模型。几个结构特征在提高和优化该反应的电子转移效率方面发挥了作用。有利的静电相互作用促进了蛋白质之间长寿命的非特异性相遇,使得反应所需的严格取向标准在相遇期间通过旋转扩散得以克服。因此产生了一种“降维”效应。蛋白质在众多静电稳定的相遇复合物中实现了合理的电子转移取向,而不是在单个占主导地位的复合物中。