Generation of a proton motive force by histidine decarboxylation and electrogenic histidine/histamine antiport in Lactobacillus buchneri
- 1 May 1993
- journal article
- Published by American Society for Microbiology in Journal of Bacteriology
- Vol. 175 (10), 2864-2870
- https://doi.org/10.1128/jb.175.10.2864-2870.1993
Abstract
Lactobacillus buchneri ST2A vigorously decarboxylates histidine to the biogenic amine histamine, which is excreted into the medium. Cells grown in the presence of histidine generate both a transmembrane pH gradient, inside alkaline, and an electrical potential (delta psi), inside negative, upon addition of histidine. Studies of the mechanism of histidine uptake and histamine excretion in membrane vesicles and proteoliposomes devoid of cytosolic histidine decarboxylase activity demonstrate that histidine uptake, histamine efflux, and histidine/histamine exchange are electrogenic processes. Histidine/histamine exchange is much faster than the unidirectional fluxes of these substrates, is inhibited by an inside-negative delta psi and is stimulated by an inside positive delta psi. These data suggest that the generation of metabolic energy from histidine decarboxylation results from an electrogenic histidine/histamine exchange and indirect proton extrusion due to the combined action of the decarboxylase and carrier-mediated exchange. The abundance of amino acid decarboxylation reactions among bacteria suggests that this mechanism of metabolic energy generation and/or pH regulation is widespread.Keywords
This publication has 29 references indexed in Scilit:
- Identification, purification, and reconstitution of OxlT, the oxalate: formate antiport protein of Oxalobacter formigenes.Journal of Biological Chemistry, 1992
- Continuous measurement of the cytoplasmic pH in Lactococcus lactis with a fluorescent pH indicatorBiochimica et Biophysica Acta (BBA) - General Subjects, 1991
- Precursor/product antiport in bacteriaMolecular Microbiology, 1990
- Occurrence and formation of biologically active amines in foodsInternational Journal of Food Microbiology, 1990
- Kinetic Mechanism and Specificity of the Arginine-Ornithine Antiporter of Lactococcus lactisJournal of Biological Chemistry, 1989
- Regulation of arginine-ornithine exchange and the arginine deiminase pathway in Streptococcus lactisJournal of Bacteriology, 1987
- Variable stoichiometry of phosphate-linked anion exchange in Streptococcus lactis: implications for the mechanism of sugar phosphate transport by bacteria.Proceedings of the National Academy of Sciences, 1986
- [32] Purification, reconstitution, and characterization of the lac permease of Escherichia coliMethods in Enzymology, 1986
- A PVC-based electrode sensitive to DDA+ as a device for monitoring the membrane potential in biological systemsArchives of Biochemistry and Biophysics, 1978
- The Occurrence and Distribution of Amino-acid Decarboxylases within the Genus LactobacillusJournal of General Microbiology, 1953