Zhou J S, Kostić N M
Department of Chemistry, Iowa State University, Ames 50011.
Biochemistry. 1993 May 4;32(17):4539-46. doi: 10.1021/bi00068a008.
Photoinduced reduction of cupriplastocyanin by the triplet state of zinc cytochrome c (the "forward" reaction) and the subsequent thermal oxidation of cuproplastocyanin by zinc cytochrome c cation radical (the "back" reaction) at ionic strengths from 40 mM to 3.00 M are studied by laser kinetic spectroscopy (so-called flash photolysis). Variation of the bimolecular rate constants over the entire range of ionic strength cannot be explained in terms of monopole-monopole interactions between the protein molecules, but it can be explained in terms of monopole-monopole, monopole-dipole, and dipole-dipole interactions. Analysis of the kinetic results in terms of these electrostatic interactions reveals the overall protein-protein orientation for electron transfer. In both the forward and back reactions the exposed heme edge in zinc cytochrome c apparently abuts the negatively-charged (acidic) patch on the plastocyanin surface, which is remote from the copper atom, and not the electroneutral (hydrophobic) patch, which is proximate to the copper atom. The acidic patch is large, and this analysis cannot rule out a relatively small difference in protein-protein orientations for the forward and back reactions. These two reactions are compared with the previously studied reduction of cupriplastocyanin by ferrocytochrome c. Although native cytochrome c and its zinc derivative have very similar structural and electrostatic properties, the reactive forms of the cytochrome c/plastocyanin and zinc cytochrome c/plastocyanin complexes may adopt somewhat different protein-protein orientations or may adopt similar orientations but differ in dynamic properties.
通过激光动力学光谱法(即所谓的闪光光解)研究了在离子强度从40 mM到3.00 M范围内,锌细胞色素c的三重态对铜蓝蛋白的光诱导还原(“正向”反应)以及随后铜蓝蛋白被锌细胞色素c阳离子自由基的热氧化(“反向”反应)。双分子速率常数在整个离子强度范围内的变化不能用蛋白质分子之间的单极 - 单极相互作用来解释,但可以用单极 - 单极、单极 - 偶极和偶极 - 偶极相互作用来解释。根据这些静电相互作用对动力学结果进行分析,揭示了电子转移过程中蛋白质 - 蛋白质的总体取向。在正向和反向反应中,锌细胞色素c中暴露的血红素边缘显然与铜蓝蛋白表面远离铜原子的带负电荷(酸性)区域相邻,而不是与靠近铜原子的电中性(疏水)区域相邻。酸性区域很大,这种分析不能排除正向和反向反应中蛋白质 - 蛋白质取向存在相对较小差异的可能性。将这两个反应与先前研究的亚铁细胞色素c对铜蓝蛋白的还原反应进行了比较。尽管天然细胞色素c及其锌衍生物具有非常相似的结构和静电性质,但细胞色素c/铜蓝蛋白和锌细胞色素c/铜蓝蛋白复合物的反应形式可能采用略有不同的蛋白质 - 蛋白质取向,或者可能采用相似的取向但在动态性质上有所不同。