Abstract
The quinol oxidase appears to be mainly responsible for the oxidation of the bacterial MKH2 in Bacillus subtilis W23 growing with either glucose or succinate. The activity of the enzyme was maximum with dimethylnaphthoquinol, a water-soluble analogue of the bacterial menaquinol. Menadiol or duroquinol were less actively respired, and naphthoquinol was not oxidized at all. After fourtyfold purification the isolated enzyme contained 5.3 mumol cytochrome aa3 per gram of protein and negligible amounts of cytochrome b and c. The turnover number based on cytochrome aa3 was about 10(3) electrons.s-1 at pH 7 and 37 degrees C. The preparation consisted mainly of a M(r) 57,000 and a M(r) 36,000 polypeptide. The N-terminal amino acid sequence of the latter polypeptide differed from that predicted by the qoxA gene of B. subtilis strain 168 (Santana et al. 1992), in that asp-14 predicted by qoxA was missing in the M(r) 36,000 polypeptide.
MeSH Terms
Amino Acid Sequence
Bacillus subtilis/enzymology,genetics
Chromatography, Ion Exchange
Electron Transport Complex IV/chemistry,isolation & purification,physiology
Genes, Bacterial
Hydroquinones/metabolism
Molecular Sequence Data
Naphthoquinones/metabolism
Oxidation-Reduction
Vitamin K/analogs & derivatives,metabolism
Chemicals
Hydroquinones
Naphthoquinones
Vitamin K
menaquinol oxidase
Electron Transport Complex IV
duroquinol
menadiol
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Lemma E
Institut für Mikrobiologie, J.-W.-Goethe Universität, Frankfurt am Main, Germany.
Schägger H
Kröger A
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