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来自大肠杆菌的细胞色素bd泛醇氧化酶复合物的血红素b558组分具有组氨酸-甲硫氨酸轴向配体。

The haem b558 component of the cytochrome bd quinol oxidase complex from Escherichia coli has histidine-methionine axial ligation.

作者信息

Spinner F, Cheesman M R, Thomson A J, Kaysser T, Gennis R B, Peng Q, Peterson J

机构信息

School of Chemical Sciences, University of East Anglia, Norwich, U.K.

出版信息

Biochem J. 1995 Jun 1;308 ( Pt 2)(Pt 2):641-4. doi: 10.1042/bj3080641.

Abstract

The cytochrome bd ubiquinol oxidase from Escherichia coli is induced when the bacteria are cultured under microaerophilic or low-aeration conditions. This membrane-bound respiratory oxidase catalyses the two-electron oxidation of ubiquinol and the four-electron reduction of dioxygen to water. The oxidase contains three haem prosthetic groups: haem b558, haem b595 and haem d. Haem d is the oxygen binding site, and it is likely that haem d and b595 form a bimetallic site in the enzyme. Haem b558 has been previously characterized spectroscopically as being low spin and has been shown to be located within subunit I (CydA) of this two-subunit enzyme. It is likely that haem b558 is associated with the quinol oxidation site, which has also been shown to be within subunit I. In a previous effort to locate the specific amino acids axially ligated to haem b558, all six histidines within subunit I were altered by site-directed mutagenesis. Only one, histidine-186, was identified as a likely ligand to haem b558. Hence it was suggested that haem b558 could not have bis(histidine) ligation. In the current work, a combination of low-temperature near-infrared magnetic circular dichroism (NIR-MCD) and EPR spectroscopies have been employed to identify the nature of the haem b558 axial ligands. The NIR-MCD spectrum at cryogenic temperatures is dominated by the low-spin haem b558 component of the complex, and the low-energy band near 1800 nm is strong evidence for histidine-methionine ligation. It is concluded that haem b558 is ligated to histidine-186 plus one of the methionines located within subunit I of the oxidase.

摘要

当大肠杆菌在微需氧或低通气条件下培养时,会诱导产生细胞色素bd泛醇氧化酶。这种膜结合呼吸氧化酶催化泛醇的双电子氧化以及将二氧还原为水的四电子反应。该氧化酶包含三个血红素辅基:血红素b558、血红素b595和血红素d。血红素d是氧结合位点,血红素d和b595可能在该酶中形成一个双金属位点。血红素b558先前通过光谱表征为低自旋,并且已证明位于这种双亚基酶的亚基I(CydA)内。血红素b558可能与泛醇氧化位点相关,该位点也已证明在亚基I内。在先前定位轴向连接到血红素b558的特定氨基酸的工作中,通过定点诱变改变了亚基I内的所有六个组氨酸。只有一个组氨酸-186被确定为可能与血红素b558配位。因此有人提出血红素b558不可能有双(组氨酸)配位。在当前工作中,采用了低温近红外磁圆二色性(NIR-MCD)和电子顺磁共振(EPR)光谱相结合的方法来确定血红素b558轴向配体的性质。低温下的NIR-MCD光谱主要由复合物的低自旋血红素b558成分主导,1800 nm附近的低能带是组氨酸-甲硫氨酸配位的有力证据。得出的结论是,血红素b558与组氨酸-186以及氧化酶亚基I内的一个甲硫氨酸配位。

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