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Journal of Bacteriology, July 2005, p. 4346-4352, Vol. 187, No. 13
0021-9193/05/$08.00+0     doi:10.1128/JB.187.13.4346-4352.2005
Copyright © 2005, American Society for Microbiology. All Rights Reserved.

Acetobacter aceti Possesses a Proton Motive Force-Dependent Efflux System for Acetic Acid

Kazunobu Matsushita,* Taketo Inoue, Osao Adachi, and Hirohide Toyama

Department of Biological Chemistry, Faculty of Agriculture, Yamaguchi University, Yamaguchi, Yamaguchi 753-8515, Japan

Received 28 October 2004/ Accepted 29 March 2005

Acetic acid bacteria are obligate aerobes able to oxidize ethanol, sugar alcohols, and sugars into their corresponding acids. Among them, Acetobacter and Gluconacetobacter species have very high ethanol oxidation capacity, leading to accumulation of vast amounts of acetic acid outside the cell. Since these bacteria are able to grow in media with high concentrations of acetic acid, they must possess a specific mechanism such as an efflux pump by which they can resist the toxic effects of acetic acid. In this study, the efflux pump of Acetobacter aceti IFO 3283 was examined using intact cells and membrane vesicles. The accumulation of acetic acid/acetate in intact cells was increased by the addition of a proton uncoupler and/or cyanide, suggesting the presence of an energy-dependent efflux system. To confirm this, right-side-out and inside-out membrane vesicles were prepared from A. aceti IFO 3283, and the accumulation of acetic acid/acetate in the vesicles was examined. Upon the addition of a respiratory substrate, the accumulation of acetic acid/acetate in the right-side-out vesicles was largely decreased, while its accumulation was very much increased in the inside-out vesicles. These respiration-dependent phenomena observed in both types of membrane vesicles were all sensitive to a proton uncoupler. Acetic acid/acetate uptake in the inside-out membrane vesicles was dependent not on ATP but on the proton motive force. Furthermore, uptake was shown to be rather specific for acetic acid and to be pH dependent, because higher uptake was observed at lower pH. Thus, A. aceti IFO 3283 possesses a proton motive force-dependent efflux pump for acetic acid.


* Corresponding author. Mailing address: Department of Biological Chemistry, Faculty of Agriculture, Yamaguchi University, Yamaguchi, Yamaguchi 753-8515, Japan. Phone: 81-839-33-5858. Fax: 81-839-33-5859. E-mail: kazunobu{at}yamaguchi-u.ac.jp.


Journal of Bacteriology, July 2005, p. 4346-4352, Vol. 187, No. 13
0021-9193/05/$08.00+0     doi:10.1128/JB.187.13.4346-4352.2005
Copyright © 2005, American Society for Microbiology. All Rights Reserved.




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