Gordon Euan H J, Sjögren Tove, Löfqvist Malin, Richter Carsten D, Allen James W A, Higham Christopher W, Hajdu Janos, Fülöp Vilmos, Ferguson Stuart J
Department of Biochemistry, University of Oxford, South Parks Road, Oxford OX1 3QU, United Kingdom.
J Biol Chem. 2003 Apr 4;278(14):11773-81. doi: 10.1074/jbc.M211886200. Epub 2003 Jan 28.
The 1.4-A crystal structure of the oxidized state of a Y25S variant of cytochrome cd(1) nitrite reductase from Paracoccus pantotrophus is described. It shows that loss of Tyr(25), a ligand via its hydroxy group to the iron of the d(1) heme in the oxidized (as prepared) wild-type enzyme, does not result in a switch at the c heme of the unusual bishistidinyl coordination to the histidine/methionine coordination seen in other conformations of the enzyme. The Ser(25) side chain is seen in two positions in the d(1) heme pocket with relative occupancies of approximately 7:3, but in neither case is the hydroxy group bound to the iron atom; instead, a sulfate ion from the crystallization solution is bound between the Ser(25) side chain and the heme iron. Unlike the wild-type enzyme, the Y25S mutant is active as a reductase toward nitrite, oxygen, and hydroxylamine without a reductive activation step. It is concluded that Tyr(25) is not essential for catalysis of reduction of any substrate, but that the requirement for activation by reduction of the wild-type enzyme is related to a requirement to drive the dissociation of this residue from the active site. The Y25S protein retains the d(1) heme less well than the wild-type protein, suggesting that the tyrosine residue has a role in stabilizing the binding of this cofactor.
描述了嗜甲基副球菌细胞色素cd(1)亚硝酸还原酶Y25S变体氧化态的1.4 Å晶体结构。结果表明,在氧化态(制备好的)野生型酶中,通过羟基与d(1)血红素铁配位的Tyr(25)缺失,并不会导致该酶其他构象中c血红素处从异常的双组氨酸配位转变为组氨酸/甲硫氨酸配位。在d(1)血红素口袋中,Ser(25)侧链出现在两个位置,相对占有率约为7:3,但在这两种情况下,羟基均未与铁原子结合;相反,结晶溶液中的硫酸根离子结合在Ser(25)侧链和血红素铁之间。与野生型酶不同,Y25S突变体作为对亚硝酸盐、氧气和羟胺的还原酶具有活性,无需还原激活步骤。得出的结论是,Tyr(25)对于任何底物的还原催化并非必不可少,但野生型酶需要通过还原激活,这与促使该残基从活性位点解离的需求有关。Y25S蛋白比野生型蛋白保留d(1)血红素的能力更差,这表明酪氨酸残基在稳定该辅因子的结合方面具有作用。