Saraiva L M, Salgueiro C A, da Costa P N, Messias A C, LeGall J, van Dongen W M, Xavier A V
Instituto de Tecnologia Química e Biológica, Universidade Nova de Lisboa, Portugal.
Biochemistry. 1998 Sep 1;37(35):12160-5. doi: 10.1021/bi981001v.
The structural basis for the pH dependence of the redox potential in the tetrahemic Desulfovibrio vulgaris (Hildenborough) cytochrome c3 was investigated by site-directed mutagenesis of charged residues in the vicinity of heme I. Mutation of lysine 45, located in the neighborhood of the propionates of heme I, by uncharged residues, namely threonine, glutamine and leucine, was performed. The replacement of a conserved charged residue, aspartate 7, present in the N-terminal region and near heme I was also attempted. The analysis of the redox interactions as well as the redox-Bohr behavior of the mutated cytochromes c3 allowed the conclusion that residue 45 has a functional role in the control of the pKa of the propionate groups of heme I and confirms the involvement of this residue in the redox-Bohr effect.
通过对血红素I附近带电荷残基进行定点诱变,研究了四血红素的普通脱硫弧菌(希登伯勒)细胞色素c3中氧化还原电位对pH依赖性的结构基础。将位于血红素I丙酸酯附近的赖氨酸45突变为不带电荷的残基,即苏氨酸、谷氨酰胺和亮氨酸。还尝试替换位于N端区域且靠近血红素I的保守带电荷残基天冬氨酸7。对突变型细胞色素c3的氧化还原相互作用以及氧化还原-玻尔行为的分析得出结论,残基45在控制血红素I丙酸酯基团的pKa中具有功能作用,并证实了该残基参与氧化还原-玻尔效应。