Taniuchi H, Shi Y, San Miguel G I, Ferretti J A, Mack J W, Fisher A, Shah M, Schechter A N, Shiloach J
Laboratory of Chemical Biology, National Institute of Diabetes and Digestive and Kidney Diseases, National Institutes of Health, Bethesda, Maryland 20892, USA.
J Protein Chem. 2001 Apr;20(3):203-15. doi: 10.1023/a:1010906929793.
To gain insight into the role of hydrophobic core-surface charge interactions in stabilizing cytochrome c, we investigated the influence of hydrophobic core residues on phosphate binding by mutating residues in yeast iso-2-cytochrome c to those corresponding to iso-l-cytochrome c in various combinations. Heat transition of ultraviolet CD was followed as a function of pH in the presence and absence of phosphate. Thermodynamic parameters were deduced. It was found that the I20V/V43A/M98L mutation in the hydrophobic core, whose locations are remote from the putative phosphate sites, modulates phosphate interactions. The modulation is pH dependent. The I20V/ M98L and V43A mutation effects are nonadditive. The results lead to a model analogous to that of Tsao, Evans, and Wennerstrom, where a domain associated with the ordered hydrophobic core is sensitive to the fields generated by the surface charges. Such an explanation would be in accord with the observed difference in thermal stability between iso-2 and horse cytochromes c.
为深入了解疏水核心 - 表面电荷相互作用在稳定细胞色素c中的作用,我们通过将酵母同工酶2 - 细胞色素c中的残基以各种组合突变为对应于同工酶1 - 细胞色素c的残基,研究了疏水核心残基对磷酸盐结合的影响。在有和没有磷酸盐存在的情况下,跟踪紫外圆二色性的热转变作为pH的函数。推导了热力学参数。发现疏水核心中的I20V / V43A / M98L突变(其位置远离假定的磷酸盐位点)调节磷酸盐相互作用。这种调节是pH依赖性的。I20V / M98L和V43A突变效应是非加性的。结果得出了一个类似于Tsao、Evans和Wennerstrom的模型,其中与有序疏水核心相关的结构域对表面电荷产生的电场敏感。这样的解释与观察到的同工酶2和马细胞色素c之间热稳定性的差异一致。