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Electron Transport System Associated with Membranes of Bacillus cereus During Vegetative Growth and Sporulation
Author(s) -
J. A. Felix,
D. G. Lundgren
Publication year - 1973
Publication title -
journal of bacteriology
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.652
H-Index - 246
eISSN - 1067-8832
pISSN - 0021-9193
DOI - 10.1128/jb.115.2.552-559.1973
Subject(s) - biology , biochemistry , electron transport chain , oxidase test , nadh dehydrogenase , bacillus cereus , succinate dehydrogenase , flavoprotein , cytochrome c oxidase , membrane , oxidoreductase , alternative oxidase , nicotinamide adenine dinucleotide , nad+ kinase , enzyme , bacteria , genetics , protein subunit , gene
Membranes isolated fromBacillus cereus ATCC 4342 during vegetative growth and during sporulation contained cytochromesb, c anda +a 3 as well as flavoprotein as determined from reduced-minus-oxidized difference spectra. Although there appeared to be no qualitative change in the cytochromes, there was a significant increase in the amount of cytochromes associated with membranes isolated from sporulating cells. Succinate and nicotinamide adenine dinucleotide (reduced form) (NADH) reduced the same cytochromes indicating similar pathways of electron transport. The electron transport inhibitors—cyanide, azide, 2-heptyl-4-hydroxyquinoline-N -oxide, dicumarol and atebrine—were examined for their effect on succinate oxidase (succinate: [O2 ] oxidoreductase) and NADH oxidase (NADH: [O2 ] oxidoreductase). NADH oxidase associated with vegetative cell membranes was less sensitive to certain inhibitors than was succinate oxidase, suggesting a branched electron transport pathway for NADH oxidation. In addition to electrons being passed to O2 through a quinone-cytochrome chain, it appears that these intermediate carriers can be bypassed such that O2 is reduced by electrons mediated by NADH dehydrogenase. Both oxidases associated with sporulating cell membranes were inhibited to a lesser degree than were the oxidases associated with vegetative cell membranes.

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