Bioenergetic Adaptations That Support Alkaliphily

Author:

Krulwich Terry Ann1,Hicks David B.1,Swartz Talia1,Ito Masahiro2

Affiliation:

1. Department of Pharmacology and Systems Therapeutics; Mount Sinai School of Medicine; New York NY 10029

2. Graduate School of Life Sciences, Toyo University, Oura-gun; Gunma 374-0193 Japan

Publisher

ASM Press

Reference142 articles.

1. Genetic diseases of acid-base transporters;Alper,;Annu. Rev. Physiol.,2002

2. Contribution of the cell wall component teichuronopeptide to pH homeostasis and alkaliphily in the alkaliphile Bacillus lentus C-125;Aono,;J. Bacteriol.,1999

3. pH-dependent flagella formation by facultative alkaliphilic Bacillus sp. C-125;Aono,;Biosci. Biotechnol. Biochem.,1992

4. Loss of alkalophily in cell-wall-component-defective mutants derived from alkalophilic Bacillus C-125. Isolation and partial characterization of the mutants;Aono,;Biochem. J.,1990

5. The rotary motor of bacterial flagella;Berg,;Annu. Rev. Biochem.,2003

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