Zajicek Richard S, Cheesman Myles R, Gordon Euan H J, Ferguson Stuart J
Department of Biochemistry, University of Oxford, Oxford OX1 3QU, United Kingdom.
J Biol Chem. 2005 Jul 15;280(28):26073-9. doi: 10.1074/jbc.M501890200. Epub 2005 May 18.
Tyr25 is a ligand to the active site d1 heme in as isolated, oxidized cytochrome cd1 nitrite reductase from Paracoccus pantotrophus. This form of the enzyme requires reductive activation, a process that involves not only displacement of Tyr25 from the d1 heme but also switching of the ligands at the c heme from bis-histidinyl to His/Met. A Y25S variant retains this bis-histidinyl coordination in the crystal of the oxidized state that has sulfate bound to the d1 heme iron. This Y25S form of the enzyme does not require reductive activation, an observation previously interpreted as meaning that the presence of the phenolate oxygen of Tyr25 is the critical determinant of the requirement for activation. This interpretation now needs re-evaluation because, unexpectedly, the oxidized as prepared Y25S protein, unlike the wild type, has different heme iron ligands in solution at room temperature, as judged by magnetic circular dichroism and electron spin resonance spectroscopies, than in the crystal. In addition, the binding of nitrite and cyanide to oxidized Y25S cytochrome cd1 is markedly different from the wild type enzyme, thus providing insight into the affinity of the oxidized d1 heme ring for anions in the absence of the steric barrier presented by Tyr25.
在来自嗜甲基副球菌的分离、氧化型细胞色素cd1亚硝酸还原酶中,酪氨酸25(Tyr25)是活性位点d1血红素的配体。这种酶的形式需要还原激活,该过程不仅涉及Tyr25从d1血红素上的置换,还涉及c血红素上的配体从双组氨酸基转变为组氨酸/甲硫氨酸。Y25S变体在氧化态晶体中保留了这种双组氨酸基配位,该晶体中硫酸根与d1血红素铁结合。这种Y25S形式的酶不需要还原激活,这一观察结果以前被解释为意味着Tyr25的酚氧的存在是激活需求的关键决定因素。现在这种解释需要重新评估,因为出乎意料的是,与野生型不同,通过磁圆二色性和电子自旋共振光谱判断,制备好的氧化态Y25S蛋白在室温下溶液中的血红素铁配体与晶体中的不同。此外,亚硝酸盐和氰化物与氧化型Y25S细胞色素cd1的结合与野生型酶明显不同,从而为在没有Tyr25提供的空间位垒的情况下氧化态d1血红素环对阴离子的亲和力提供了深入了解。