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鉴定琥珀酸沃林氏菌氢化酶中对氢气还原甲基萘醌至关重要的组氨酸残基。

Identification of histidine residues in Wolinella succinogenes hydrogenase that are essential for menaquinone reduction by H2.

作者信息

Gross R, Simon J, Lancaster C R, Kröger A

机构信息

Institut für Mikrobiologie, Johann Wolfgang Goethe-Universität, Marie-Curie-Strasse 9, D-60439 Frankfurt am Main, Germany.

出版信息

Mol Microbiol. 1998 Nov;30(3):639-46. doi: 10.1046/j.1365-2958.1998.01100.x.

Abstract

The cytochrome b subunit (HydC) of Wolinella succinogenes hydrogenase binds two haem B groups. This is concluded from the haem B content of the isolated hydrogenase and is confirmed by the response of its cytochrome b to redox titration. In addition, three of the four haem B ligands were identified by characterizing mutants with the corresponding histidine residues replaced by alanine or methionine. Substitution in HydC of His-25, His-67 or His-186, which are, in addition to His-200, predicted to be haem B ligands, caused the loss of quinone reactivity of the hydrogenase, while the activity of benzylviologen reduction was retained. The corresponding mutants did not grow with H2 as electron donor and either fumarate or polysulphide as terminal electron acceptor. The mutants grown with formate and fumarate did not catalyse electron transport from H2 to fumarate or to polysulphide, or quinone reduction by H2, in contrast to the wild-type strain. Cytochrome b was not reduced by H2 in the Triton X-100 extract of the mutant membranes, which contained wild-type amounts of the mutated HydC protein. Substitution in HydC of His-122, His-158 or His-187, which are predicted not to be haem B ligands, yielded mutants with wild-type properties. Substitution in HydA of His-188 or of His-305 resulted in mutants with the same properties as those lacking one of the haem B ligands of HydC. His-305 is located in the membrane-integrated C-terminal helix of HydA. His-188 of HydA is predicted to be a ligand of the distal iron-sulphur centre that may serve as the direct electron donor to the haem B groups of HydC. The results suggest that each of the three predicted haem B ligands of HydC tested (out of four) is required for electron transport from H2 to either fumarate or polysulphide, and for quinone reactivity. This also holds true for the two conserved histidine residues of HydA.

摘要

琥珀酸沃林氏菌氢化酶的细胞色素b亚基(HydC)结合两个血红素B基团。这是根据分离出的氢化酶的血红素B含量得出的结论,并通过其细胞色素b对氧化还原滴定的响应得到证实。此外,通过对相应组氨酸残基被丙氨酸或甲硫氨酸取代的突变体进行表征,确定了四个血红素B配体中的三个。在HydC中,除了His-200外,预测为血红素B配体的His-25(25位组氨酸)、His-67(67位组氨酸)或His-186(186位组氨酸)被取代,导致氢化酶失去醌反应性,而苄基紫精还原活性得以保留。相应的突变体不能以H₂作为电子供体,以富马酸或多硫化物作为末端电子受体进行生长。与野生型菌株相比,以甲酸盐和富马酸生长的突变体不能催化电子从H₂传递到富马酸或多硫化物,也不能催化H₂还原醌。在含有野生型数量的突变HydC蛋白的突变体膜的Triton X-100提取物中,细胞色素b不能被H₂还原。在HydC中,预测不是血红素B配体的His-122(122位组氨酸)、His-158(158位组氨酸)或His-187(187位组氨酸)被取代,产生具有野生型特性的突变体。在HydA中,His-188(188位组氨酸)或His-305(305位组氨酸)被取代,产生的突变体具有与缺少HydC的一个血红素B配体的突变体相同的特性。His-305位于HydA的膜整合C末端螺旋中。HydA的His-188预计是远端铁硫中心的一个配体,该中心可能作为HydC血红素B基团的直接电子供体。结果表明,测试的HydC的三个预测血红素B配体(共四个)中的每一个对于电子从H₂传递到富马酸或多硫化物以及醌反应性都是必需的。HydA的两个保守组氨酸残基也是如此。

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