Previous Article | Next Article 
Journal of Bacteriology, December 2000, p. 6557-6564, Vol. 182, No. 23
0021-9193/00/$04.00+0
Copyright © 2000, American Society for Microbiology. All rights reserved.
Terminal Oxidases of Bacillus subtilis
Strain 168: One Quinol Oxidase, Cytochrome
aa3 or Cytochrome bd, Is Required
for Aerobic Growth
Lena
Winstedt and
Claes
von
Wachenfeldt*
Department of Microbiology, Lund University,
Lund, Sweden
Received 26 June 2000/Accepted 8 September 2000
The gram-positive endospore-forming bacterium Bacillus
subtilis has, under aerobic conditions, a branched respiratory
system comprising one quinol oxidase branch and one cytochrome oxidase branch. The system terminates in one of four alternative terminal oxidases. Cytochrome caa3 is a cytochrome
c oxidase, whereas cytochrome bd and cytochrome
aa3 are quinol oxidases. A fourth terminal
oxidase, YthAB, is a putative quinol oxidase predicted from DNA
sequence analysis. None of the terminal oxidases are, by themselves,
essential for growth. However, one quinol oxidase (cytochrome
aa3 or cytochrome bd) is required
for aerobic growth of B. subtilis strain 168. Data
indicating that cytochrome aa3 is the major
oxidase used by exponentially growing cells in minimal and rich medium
are presented. We show that one of the two heme-copper oxidases,
cytochrome caa3 or cytochrome
aa3, is required for efficient sporulation of
B. subtilis strain 168 and that deletion of YthAB in a
strain lacking cytochrome aa3 makes the strain
sporulation deficient.
*
Corresponding author. Mailing address: Lund University,
Department of Microbiology, Sölvegatan 12, SE-223 62 Lund,
Sweden. Phone: 46 46 222 3456. Fax: 46 46 157839. E-mail:
claes.von_wachenfeldt{at}mikrbiol.lu.se.
Journal of Bacteriology, December 2000, p. 6557-6564, Vol. 182, No. 23
0021-9193/00/$04.00+0
Copyright © 2000, American Society for Microbiology. All rights reserved.
This article has been cited by other articles:
-
Brochier-Armanet, C., Talla, E., Gribaldo, S.
(2009). The Multiple Evolutionary Histories of Dioxygen Reductases: Implications for the Origin and Evolution of Aerobic Respiration. Mol Biol Evol
26: 285-297
[Abstract]
[Full Text]
-
Hu, Y., Raengpradub, S., Schwab, U., Loss, C., Orsi, R. H., Wiedmann, M., Boor, K. J.
(2007). Phenotypic and Transcriptomic Analyses Demonstrate Interactions between the Transcriptional Regulators CtsR and Sigma B in Listeria monocytogenes. Appl. Environ. Microbiol.
73: 7967-7980
[Abstract]
[Full Text]
-
Brooijmans, R. J. W., Poolman, B., Schuurman-Wolters, G. K., de Vos, W. M., Hugenholtz, J.
(2007). Generation of a Membrane Potential by Lactococcus lactis through Aerobic Electron Transport. J. Bacteriol.
189: 5203-5209
[Abstract]
[Full Text]
-
Day, W. A. Jr., Rasmussen, S. L., Carpenter, B. M., Peterson, S. N., Friedlander, A. M.
(2007). Microarray Analysis of Transposon Insertion Mutations in Bacillus anthracis: Global Identification of Genes Required for Sporulation and Germination. J. Bacteriol.
189: 3296-3301
[Abstract]
[Full Text]
-
Hederstedt, L., Lewin, A., Throne-Holst, M.
(2005). Heme A Synthase Enzyme Functions Dissected by Mutagenesis of Bacillus subtilis CtaA. J. Bacteriol.
187: 8361-8369
[Abstract]
[Full Text]
-
Larsson, J. T., Rogstam, A., von Wachenfeldt, C.
(2005). Coordinated patterns of cytochrome bd and lactate dehydrogenase expression in Bacillus subtilis. Microbiology
151: 3323-3335
[Abstract]
[Full Text]
-
Schau, M., Eldakak, A., Hulett, F. M.
(2004). Terminal Oxidases Are Essential To Bypass the Requirement for ResD for Full Pho Induction in Bacillus subtilis. J. Bacteriol.
186: 8424-8432
[Abstract]
[Full Text]
-
Schau, M., Chen, Y., Hulett, F. M.
(2004). Bacillus subtilis YdiH Is a Direct Negative Regulator of the cydABCD Operon. J. Bacteriol.
186: 4585-4595
[Abstract]
[Full Text]
-
Bengtsson, J., von Wachenfeldt, C., Winstedt, L., Nygaard, P., Hederstedt, L.
(2004). CtaG is required for formation of active cytochrome c oxidase in Bacillus subtilis. Microbiology
150: 415-425
[Abstract]
[Full Text]
-
Kobayashi, K., Ehrlich, S. D., Albertini, A., Amati, G., Andersen, K. K., Arnaud, M., Asai, K., Ashikaga, S., Aymerich, S., Bessieres, P., Boland, F., Brignell, S. C., Bron, S., Bunai, K., Chapuis, J., Christiansen, L. C., Danchin, A., Debarbouille, M., Dervyn, E., Deuerling, E., Devine, K., Devine, S. K., Dreesen, O., Errington, J., Fillinger, S., Foster, S. J., Fujita, Y., Galizzi, A., Gardan, R., Eschevins, C., Fukushima, T., Haga, K., Harwood, C. R., Hecker, M., Hosoya, D., Hullo, M. F., Kakeshita, H., Karamata, D., Kasahara, Y., Kawamura, F., Koga, K., Koski, P., Kuwana, R., Imamura, D., Ishimaru, M., Ishikawa, S., Ishio, I., Le Coq, D., Masson, A., Mauel, C., Meima, R., Mellado, R. P., Moir, A., Moriya, S., Nagakawa, E., Nanamiya, H., Nakai, S., Nygaard, P., Ogura, M., Ohanan, T., O'Reilly, M., O'Rourke, M., Pragai, Z., Pooley, H. M., Rapoport, G., Rawlins, J. P., Rivas, L. A., Rivolta, C., Sadaie, A., Sadaie, Y., Sarvas, M., Sato, T., Saxild, H. H., Scanlan, E., Schumann, W., Seegers, J. F. M. L., Sekiguchi, J., Sekowska, A., Seror, S. J., Simon, M., Stragier, P., Studer, R., Takamatsu, H., Tanaka, T., Takeuchi, M., Thomaides, H. B., Vagner, V., van Dijl, J. M., Watabe, K., Wipat, A., Yamamoto, H., Yamamoto, M., Yamamoto, Y., Yamane, K., Yata, K., Yoshida, K., Yoshikawa, H., Zuber, U., Ogasawara, N.
(2003). Essential Bacillussubtilis genes. Proc. Natl. Acad. Sci. USA
100: 4678-4683
[Abstract]
[Full Text]
-
Kana, B. D., Weinstein, E. A., Avarbock, D., Dawes, S. S., Rubin, H., Mizrahi, V.
(2001). Characterization of the cydAB-Encoded Cytochrome bd Oxidase from Mycobacterium smegmatis. J. Bacteriol.
183: 7076-7086
[Abstract]
[Full Text]
-
Dauner, M., Storni, T., Sauer, U.
(2001). Bacillus subtilis Metabolism and Energetics in Carbon-Limited and Excess-Carbon Chemostat Culture. J. Bacteriol.
183: 7308-7317
[Abstract]
[Full Text]
-
Paul, S., Zhang, X., Hulett, F. M.
(2001). Two ResD-Controlled Promoters Regulate ctaA Expression in Bacillus subtilis. J. Bacteriol.
183: 3237-3246
[Abstract]
[Full Text]