Lactobacillus casei 64H Contains a Phosphoenolpyruvate-Dependent Phosphotransferase System for Uptake of Galactose, as Confirmed by Analysis of ptsH and Different gal Mutants

Author:

Bettenbrock Katja1,Siebers Ulrike1,Ehrenreich Petra1,Alpert Carl-Alfred1

Affiliation:

1. Universität Osnabrück, Fachbereich Biologie/Chemie, AG Genetik, 49076 Osnabrück, Germany

Abstract

ABSTRACT Galactose metabolism in Lactobacillus casei 64H was analyzed by genetic and biochemical methods. Mutants with defects in ptsH , galK , or the tagatose 6-phosphate pathway were isolated either by positive selection using 2-deoxyglucose or 2-deoxygalactose or by an enrichment procedure with streptozotocin. ptsH mutations abolish growth on lactose, cellobiose, N -acetylglucosamine, mannose, fructose, mannitol, glucitol, and ribitol, while growth on galactose continues at a reduced rate. Growth on galactose is also reduced, but not abolished, in galK mutants. A mutation in galK in combination with a mutation in the tagatose 6-phosphate pathway results in sensitivity to galactose and lactose, while a galK mutation in combination with a mutation in ptsH completely abolishes galactose metabolism. Transport assays, in vitro phosphorylation assays, and thin-layer chromatography of intermediates of galactose metabolism also indicate the functioning of a permease/Leloir pathway and a phosphoenolpyruvate-dependent phosphotransferase system (PTS)/tagatose 6-phosphate pathway. The galactose-PTS is induced by growth on either galactose or lactose, but the induction kinetics for the two substrates are different.

Publisher

American Society for Microbiology

Subject

Molecular Biology,Microbiology

Reference35 articles.

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3. The gal Genes for the Leloir Pathway of Lactobacillus casei 64H

4. Bettenbrock K. and C.-A. Alpert. Unpublished data.

5. Lactose and d-galactose metabolism in Staphylococcus aureus: pathway of d-galactose 6-phosphate degradation;Bisset D. L.;Biochem. Biophys. Res. Commun.,1973

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