Pearl Naw May, Jacobson Timothy, Arisa Moraa, Vitello Lidia B, Erman James E
Department of Chemistry and Biochemistry, Northern Illinois University, DeKalb, Illinois 60115, USA.
Biochemistry. 2007 Jul 17;46(28):8263-72. doi: 10.1021/bi700623u. Epub 2007 Jun 20.
Fifteen single-site charge-reversal mutations of yeast cytochrome c peroxidase (CcP) have been constructed to determine the effect of localized charge on the catalytic properties of the enzyme. The mutations are located on the front face of CcP, near the cytochrome c binding site identified in the crystallographic structure of the yeast cytochrome c-CcP complex [Pelletier, H., and Kraut, J. (1992) Science 258, 1748-1755]. The mutants are characterized by absorption spectroscopy and hydrogen peroxide reactivity at both pH 6.0 and 7.5 and by steady-state kinetic studies using recombinant yeast iso-1-ferrocytochrome c(C102T) as a substrate at pH 7.5. Some of the charge-reversal mutations cause detectable changes in the absorption spectrum, especially at pH 7.5, reflecting changes in the equilibrium between penta- and hexacoordinate heme species in the enzyme. An increase in the amount of hexacoordinate heme in the mutant enzymes correlates with an increase in the fraction of enzyme that does not react with hydrogen peroxide. Steady-state velocity measurements indicate that five of the 15 mutations cause large increases in the Michaelis constant (R31E, D34K, D37K, E118K, and E290K). These data support the hypothesis that the cytochrome c-CcP complex observed in the crystal is the dominant catalytically active complex in solution.
已构建了酵母细胞色素c过氧化物酶(CcP)的15个单点电荷反转突变体,以确定局部电荷对该酶催化特性的影响。这些突变位于CcP的正面,靠近在酵母细胞色素c - CcP复合物晶体结构中确定的细胞色素c结合位点[佩尔蒂埃,H.,和克劳特,J.(1992年)《科学》258,1748 - 1755]。通过吸收光谱和在pH 6.0和7.5下的过氧化氢反应性对突变体进行表征,并在pH 7.5下使用重组酵母异 - 1 - 亚铁细胞色素c(C102T)作为底物进行稳态动力学研究。一些电荷反转突变导致吸收光谱出现可检测到的变化,尤其是在pH 7.5时,这反映了该酶中五配位和六配位血红素物种之间平衡的变化。突变酶中六配位血红素量的增加与不与过氧化氢反应的酶比例增加相关。稳态速度测量表明,15个突变中有5个导致米氏常数大幅增加(R31E、D34K、D37K、E118K和E290K)。这些数据支持了晶体中观察到的细胞色素c - CcP复合物是溶液中主要催化活性复合物的假设。