Dickinson L C, Chien J C
Biochemistry. 1975 Aug 12;14(16):3526-34. doi: 10.1021/bi00687a003.
An improved procedure for the preparation of cobalt-cytochrome c has been developed. Various factors influencing the cobalt insertion process are discussed. The optical spectra of cobalt-cytochrome c suggest a six-coordinated species. The spectral shifts occurring with oxidation-reduction are compared with those observed for deoxy-cobaltohemoglobin and ferrocytochrome c and attributed to the effect of d(z2) electron on stereoelectronic interactions between the axial ligands and the porphyrin pi systems. Cobalt-cytochrome c has Em,7 = -140 +/- 20 mV as compared to an Em,7 of +250mV for ferrocytochrome c. An explanation for this negative Em,7 is offered. Cobaltocytochrome c is oxidized by cytochrome oxidase at about 45% of the rate for native cytochrome c. On the other hand cobalticytochrome c was not reduced by microsomal NADH or NADPH cytochrome c reductase nor by mitochondrial NADH or succinate cytochrome c reductase. It appears that the integrity of the reductase binding site is destroyed and the oxidase binding site has been modified by cobalt substitution.
已开发出一种改进的制备钴 - 细胞色素c的方法。讨论了影响钴插入过程的各种因素。钴 - 细胞色素c的光谱表明其为六配位物种。将氧化还原过程中发生的光谱变化与脱氧钴血红蛋白和亚铁细胞色素c所观察到的光谱变化进行了比较,并归因于d(z2)电子对轴向配体与卟啉π体系之间立体电子相互作用的影响。与亚铁细胞色素c的Em,7为 +250mV相比,钴 - 细胞色素c的Em,7 = -140 +/- 20 mV。对此负Em,7给出了解释。钴细胞色素c被细胞色素氧化酶氧化的速率约为天然细胞色素c的45%。另一方面,高钴细胞色素c既不被微粒体NADH或NADPH细胞色素c还原酶还原,也不被线粒体NADH或琥珀酸细胞色素c还原酶还原。看来还原酶结合位点的完整性已被破坏,氧化酶结合位点已因钴取代而被修饰。