Zahn J A, Arciero D M, Hooper A B, Dispirito A A
Department of Microbiology, Immunology, and Preventive Medicine, Iowa State University, Iowa 50011-3211, USA.
Eur J Biochem. 1996 Sep 15;240(3):684-91. doi: 10.1111/j.1432-1033.1996.0684h.x.
Cytochrome c' was isolated from the obligate methylotroph Methylococcus capsulatus Bath. The native and subunit molecular masses of the cytochrome were 34.9 kDa and 16.2 kDa, respectively, with an isoelectric pH of 7.0. The amino acid composition and N-terminal amino acid sequence were consistent with identification of the protein as a cytochrome c'. The electron paramagnetic resonance spectrum of the monoheme cytochrome indicated the presence of a high spin, S = 5/2, heme center that is diagnostic of cytochromes c'. The optical absorption spectra of ferric or ferrous cytochrome c' were also characteristic of cytochromes c'. The ferrocytochrome bound carbon monoxide and nitric oxide, but not isocyanide, cyanide, or azide. Changes in physical properties due to binding of CO or NO to some other c'-type cytochromes have been interpreted as an indication of dimer dissociation. In the case of cytochrome c' from M. capsulatus Bath, analytical ultracentrifugation of the ferricytochrome, the ferrocytochrome, and the ferrocytochrome-CO complex indicate that the changes induced by binding of CO are conformational and are not consistent with dimer dissociation. EPR spectra show that cytochrome c' was reduced in the presence of hydroxylamine only when in a complex with cytochrome P-460. The value of the midpoint potential, Em 7.0, was -250 mV for cytochrome c' from M. capsulatus Bath, which is well below the range of values reported for other cytochromes c'. The values of midpoint potentials for cytochrome P-460 (Em 7.0 = -300 mV to -380 mV) and cytochrome C555 (Em 7.0 = +175 mV to +195 mV) are less than and greater than, respectively, the value for cytochrome c' and suggest the possibility that the latter may function as an electron shuttle between cytochrome P-460 and cytochrome C555.
细胞色素c'是从专性甲基营养菌荚膜甲基球菌巴氏亚种中分离得到的。该细胞色素的天然分子质量和亚基分子质量分别为34.9 kDa和16.2 kDa,等电点pH为7.0。氨基酸组成和N端氨基酸序列与该蛋白作为细胞色素c'的鉴定结果一致。单血红素细胞色素的电子顺磁共振谱表明存在一个高自旋(S = 5/2)的血红素中心,这是细胞色素c'的诊断特征。高铁或亚铁细胞色素c'的光吸收光谱也具有细胞色素c'的特征。亚铁细胞色素能结合一氧化碳和一氧化氮,但不能结合异氰化物、氰化物或叠氮化物。由于一氧化碳或一氧化氮与其他一些c'型细胞色素结合而导致的物理性质变化被解释为二聚体解离的迹象。对于来自荚膜甲基球菌巴氏亚种的细胞色素c',对高铁细胞色素、亚铁细胞色素和亚铁细胞色素 - 一氧化碳复合物进行分析超速离心表明,一氧化碳结合所诱导的变化是构象性的,与二聚体解离不一致。电子顺磁共振谱表明,只有当细胞色素c'与细胞色素P - 460形成复合物时,在羟胺存在下才会被还原。来自荚膜甲基球菌巴氏亚种的细胞色素c'的中点电位Em 7.0为 - 250 mV,远低于其他细胞色素c'报道的值范围。细胞色素P - 460(Em 7.0 = - 300 mV至 - 380 mV)和细胞色素C555(Em 7.0 = + 175 mV至 + 195 mV)的中点电位值分别小于和大于细胞色素c'的值,这表明后者可能作为细胞色素P - 460和细胞色素C555之间的电子穿梭体发挥作用。