大肠杆菌琥珀酸-醌还原酶血红素轴向配体的突变:对酵母线粒体复合物II中血红素连接的影响。

Mutation of the heme axial ligand of Escherichia coli succinate-quinone reductase: implications for heme ligation in mitochondrial complex II from yeast.

作者信息

Maklashina Elena, Rajagukguk Sany, McIntire William S, Cecchini Gary

机构信息

Molecular Biology Division, VA Medical Center, Department of Biochemistry and Biophysics, University of California, San Francisco, California 94158, USA.

出版信息

Biochim Biophys Acta. 2010 Jun-Jul;1797(6-7):747-54. doi: 10.1016/j.bbabio.2010.01.019. Epub 2010 Jan 25.

Abstract

A b-type heme is conserved in membrane-bound complex II enzymes (SQR, succinate-ubiquinone reductase). The axial ligands for the low spin heme b in Escherichia coli complex II are SdhC His84 and SdhD His71. E. coli SdhD His71 is separated by 10 residues from SdhD Asp82 and Tyr83 which are essential for ubiquinone catalysis. The same His-10x-AspTyr motif dominates in homologous SdhD proteins, except for Saccharomyces cerevisiae where a tyrosine is at the axial position (Tyr-Cys-9x-AspTyr). Nevertheless, the yeast enzyme was suggested to contain a stoichiometric amount of heme, however, with the Cys ligand in the aforementioned motif acting as heme ligand. In this report, the role of Cys residues for heme coordination in the complex II family of enzymes is addressed. Cys was substituted to the SdhD-71 position and the yeast Tyr71Cys72 motif was also recreated. The Cys71 variant retained heme, although it was high spin, while the Tyr71Cys72 mutant lacked heme. Previously the presence of heme in S. cerevisiae was detected by a spectral peak in fumarate-oxidized, dithionite-reduced mitochondria. Here it is shown that this method must be used with caution. Comparison of bovine and yeast mitochondrial membranes shows that fumarate induced reoxidation of cytochromes in both SQR and the bc1 complex (ubiquinol-cytochrome c reductase). Thus, this report raises a concern about the presence of low spin heme b in S. cerevisiae complex II.

摘要

b型血红素在膜结合复合物II酶(SQR,琥珀酸-泛醌还原酶)中保守存在。大肠杆菌复合物II中低自旋血红素b的轴向配体是SdhC His84和SdhD His71。大肠杆菌SdhD His71与SdhD Asp82和Tyr83相隔10个残基,而Asp82和Tyr83对泛醌催化至关重要。除酿酒酵母外,相同的His-10x-AspTyr基序在同源SdhD蛋白中占主导地位,在酿酒酵母中轴向位置为酪氨酸(Tyr-Cys-9x-AspTyr)。然而,有研究认为酵母酶含有化学计量的血红素,不过上述基序中的半胱氨酸配体充当血红素配体。在本报告中,探讨了半胱氨酸残基在复合物II家族酶中血红素配位的作用。将半胱氨酸替换到SdhD-71位置,并重新构建了酵母Tyr71Cys72基序。Cys71变体保留了血红素,尽管它是高自旋的,而Tyr71Cys72突变体缺乏血红素。此前,通过富马酸氧化、连二亚硫酸钠还原线粒体中的光谱峰检测到酿酒酵母中存在血红素。此处表明,使用该方法时必须谨慎。牛和酵母线粒体膜的比较表明,富马酸诱导了SQR和bc1复合物(泛醇-细胞色素c还原酶)中细胞色素的再氧化。因此,本报告引发了对酿酒酵母复合物II中低自旋血红素b存在情况的关注。

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