Lui S M, Soriano A, Cowan J A
Evans Laboratory of Chemistry, Ohio State University, Columbus 43210.
Biochem J. 1994 Dec 1;304 ( Pt 2)(Pt 2):441-7. doi: 10.1042/bj3040441.
The dissimilatory sulphite reductase (desulfoviridin) from the sulphate-reducing bacterium Desulfovibrio vulgaris (Hildenborough) displays distinct optical and redox characteristics relative to the haem subunit of Escherichia coli assimilatory sulphite reductase. For high-spin pentaco-ordinate desulfoviridin there is minimal change in the absorbance of the oxidized chromophores both after reduction or after addition of exogenous ligands. A ligand-metal charge-transfer band approximately 702 nm is observed in both the oxidized and one-electron-reduced enzyme. E.p.r. spectroscopy has been used to define the relative reduction potentials for sirohaem and [Fe4S4] centres (delta E0 = Es0-Ec0) as a function of sirohaem axial co-ordination. Typically delta E0 lies in a range from -10 to -50 mV. These results show a correlation with the sigma-donor or pi-acceptor properties of the ligand and stand in sharp contrast with estimates for the E. coli enzyme. The electronic properties of the coupled [Fe4S4]-sirohaem redox centre common to both nitrite- and sulphite-reducing enzymes are apparently strongly dependent on the environment generated by protein side chains.
来自硫酸盐还原菌嗜热栖热脱硫弧菌(Hildenborough)的异化亚硫酸盐还原酶(脱硫绿素)相对于大肠杆菌同化亚硫酸盐还原酶的血红素亚基表现出独特的光学和氧化还原特性。对于高自旋五配位脱硫绿素,无论是还原后还是添加外源配体后,氧化发色团的吸光度变化都很小。在氧化态和单电子还原态的酶中均观察到约702nm的配体-金属电荷转移带。电子顺磁共振光谱已被用于确定作为西罗血红素轴向配位函数的西罗血红素和[Fe4S4]中心的相对还原电位(δE0 = Es0 - Ec0)。通常,δE0在-10至-50mV的范围内。这些结果显示出与配体的σ供体或π受体性质相关,并且与大肠杆菌酶的估计值形成鲜明对比。亚硝酸盐还原酶和亚硫酸盐还原酶共有的耦合[Fe4S4]-西罗血红素氧化还原中心的电子性质显然强烈依赖于蛋白质侧链产生的环境。