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四血红素细胞色素c3的定点诱变。血红素轴向配体置换后氧化还原电位的改变。

Site-directed mutagenesis of tetraheme cytochrome c3. Modification of oxidoreduction potentials after heme axial ligand replacement.

作者信息

Mus-Veteau I, Dolla A, Guerlesquin F, Payan F, Czjzek M, Haser R, Bianco P, Haladjian J, Rapp-Giles B J, Wall J D

机构信息

Laboratoire de Chimie Bactérienne, Centre National de la Recherche Scientifique (CNRS) BP71, Marseille, France.

出版信息

J Biol Chem. 1992 Aug 25;267(24):16851-8.

PMID:1324913
Abstract

The nature of the axial ligands of a heme group is an important factor in maintaining the oxidation-reduction potential of a c-type cytochrome. Cytochrome c3 from Desulfovibrio vulgaris Hildenborough contains four bis-histidinyl coordinated hemes with low oxidation-reduction potentials. Site-directed mutagenesis was used to generate a mutant in which histidine 70, the sixth axial ligand of heme 4, has been replaced by a methionine. The mutant protein was expressed in Desulfovibrio desulfuricans G200 at a level similar to the wild type cytochrome. A model for the three-dimensional structure of D. vulgaris Hildenborough cytochrome c3 was generated on the basis of the crystal structure of D. vulgaris Miyazaki cytochrome c3 in order to investigate the effects of the H70M mutation. The model, together with NMR data, suggested that methionine 70 has effectively replaced histidine 70 as the sixth axial ligand of heme 4 without significant alteration of the structure. A large increase of at least 200 mV of one of the four oxidation-reduction potentials was observed by electrochemistry and is interpreted in terms of structure/potential relationships.

摘要

血红素基团轴向配体的性质是维持c型细胞色素氧化还原电位的一个重要因素。来自希登伯勒脱硫弧菌的细胞色素c3含有四个具有低氧化还原电位的双组氨酸配位血红素。采用定点诱变技术产生了一个突变体,其中血红素4的第六个轴向配体组氨酸70被甲硫氨酸取代。突变蛋白在脱硫脱硫弧菌G200中表达,表达水平与野生型细胞色素相似。为了研究H70M突变的影响,基于宫崎脱硫弧菌细胞色素c3的晶体结构构建了希登伯勒脱硫弧菌细胞色素c3的三维结构模型。该模型与核磁共振数据表明,甲硫氨酸70有效地取代了组氨酸70作为血红素4的第六个轴向配体,而结构没有明显改变。通过电化学观察到四个氧化还原电位之一至少有200 mV的大幅增加,并根据结构/电位关系进行了解释。

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