A flavoprotein functional as NADH oxidase from Amphibacillus xylanus Ep01: purification and characterization of the enzyme and structural analysis of its gene

Author:

Niimura Y1,Ohnishi K1,Yarita Y1,Hidaka M1,Masaki H1,Uchimura T1,Suzuki H1,Kozaki M1,Uozumi T1

Affiliation:

1. Department of Food Science and Technology, Tokyo University of Agriculture, Japan.

Abstract

Amphibacillus xylanus Ep01, a facultative anaerobe we recently isolated, shows rapid aerobic growth even though it lacks a respiratory pathway. Thus, the oxidative consumption of NADH, produced during glycolysis and pyruvate oxidation, should be especially important for maintenance of intracellular redox balance in this bacterium. We purified a flavoprotein functional as NADH oxidase from aerobically growing A. xylanus Ep01. The A. xylanus enzyme is a homotetramer composed of a subunit (M(r) 56,000) containing 1 mol of flavin adenine dinucleotide. This enzyme catalyzes the reduction of oxygen to hydrogen peroxide with beta-NADH as the preferred electron donor and exhibits no activity with NADPH. The flavoprotein gene of A. xylanus Ep01 was cloned by using a specific antibody. The amino acid sequence of 509 residues, deduced from the nucleotide sequence, showed 51.2 and 72.5% identities to the amino acid sequences of alkyl hydroperoxide reductase from Salmonella typhimurium and NADH dehydrogenase from alkalophilic Bacillus sp. strain YN-1, respectively. Bacillus spp. have a respiratory chain and grow well under aerobic conditions. In contrast, Amphibacillus spp., having no respiratory chain, grow equally well under both aerobic and anaerobic conditions, which distinguishes these two genera. Salmonella spp., which are gram-negative bacteria, are taxonomically distant from gram-positive bacteria such as Bacillus spp. and Amphibacillus spp. The above findings, however, suggest that the flavoprotein functional as NADH oxidase, the alkyl hydroperoxide reductase, and the NADH dehydrogenase diverged recently, with only small changes leading to their functional differences.

Publisher

American Society for Microbiology

Subject

Molecular Biology,Microbiology

Reference32 articles.

1. The streptococcal flavoprotein NADH oxidase. I. Evidence linking NADH oxidase and NADH peroxidase cysteinyl redox centers;Ahmed S. A.;J. Biol. Chem.,1989

2. The streptococcal flavoprotein NADH oxidase. II. Interactions of pyridine nucleotides with reduced and oxidized enzyme forms;Ahmed S. A.;J. Biol. Chem.,1989

3. Amersham Corp. 1987. Amersham Super ScreenTM immunoscreening system manual. Amersham Corp. Arlington Heights Ill.

4. A rapid alkaline extraction method for the isolation of plasmid DNA;Birnboim H. C.;Methods Enzymol.,1983

5. NADH oxidase from the extreme thermophile Thermus aquaticus YT-1, purification and characterization;Cocco D.;Eur. J. Biochem.,1981

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