Topological Analysis of the Aerobic Membrane-Bound Formate Dehydrogenase of Escherichia coli

大肠杆菌 生物 格式化 甲酸脱氢酶 大肠杆菌蛋白质类 生物化学 微生物学 计算生物学 基因 催化作用
作者
Stéphane L. Benoit,Hafid Abaibou,Marie‐Andrée Mandrand‐Berthelot
出处
期刊:Journal of Bacteriology [American Society for Microbiology]
卷期号:180 (24): 6625-6634 被引量:55
标识
DOI:10.1128/jb.180.24.6625-6634.1998
摘要

Besides formate dehydrogenase N (FDH-N), which is involved in the major anaerobic respiratory pathway in the presence of nitrate, Escherichia coli synthesizes a second isoenzyme, called FDH-O, whose physiological role is to ensure rapid adaptation during a shift from aerobiosis to anaerobiosis. FDH-O is a membrane-bound enzyme complex composed of three subunits, alpha (FdoG), beta (FdoH), and gamma (FdoI), which exhibit high sequence similarity to the equivalent polypeptides of FDH-N. The topology of these three subunits has been studied by using blaM (beta-lactamase) gene fusions. A collection of 47 different randomly generated Fdo-BlaM fusions, 4 site-specific fusions, and 3 sandwich fusions were isolated along the entire sequence of the three subunits. In contrast to previously reported predictions from sequence analysis, our data suggested that the alphabeta catalytic dimer is located in the cytoplasm, with a C-terminal anchor for beta protruding into the periplasm. As expected, the gamma subunit, which specifies cytochrome b, was shown to cross the cytoplasmic membrane four times, with the N and C termini exposed to the cytoplasm. Protease digestion studies of the 35S-labelled FDH-O heterotrimer in spheroplasts add further support to this model. Consistently, prior studies regarding the bioenergetic function of formate dehydrogenase provided evidence for a mechanism in which formate is oxidized in the cytoplasm.
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