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1.
Mol Microbiol ; 42(1): 87-99, 2001 Oct.
Article in English | MEDLINE | ID: mdl-11679069

ABSTRACT

Erwinia chrysanthemi insertion mutants were isolated that grew poorly specifically in the presence of glycine betaine (GB) or its analogues in high-salt media. Transposon insertions were found to affect the bspA gene, which forms an operon including the psd locus coding for phosphatidylserine decarboxylase. Initial GB uptake is not affected by the bspA mutation. However, in high-salt medium, its initial accumulation is followed by a reduced glucose uptake and a release of GB but not a loss of viability. BspA is homologous to the widespread MscS channel, YggB, but does not seem to constitute a mechanosensitive channel. We suggest that BspA is a protein sensing both intracellular GB and the extracellular salt content of the medium, the hypothesis being built on the observation that BspA is necessary to maintain the GB pool during osmoadaptation in high-salt media containing this osmoprotectant.


Subject(s)
Bacterial Proteins/metabolism , Betaine/pharmacology , Dickeya chrysanthemi/drug effects , Dickeya chrysanthemi/physiology , Membrane Proteins/metabolism , Water-Electrolyte Balance/physiology , Amino Acid Sequence , Bacterial Proteins/chemistry , Bacterial Proteins/genetics , DNA Transposable Elements/genetics , Dickeya chrysanthemi/genetics , Genes, Bacterial , Glucose/metabolism , Membrane Proteins/chemistry , Membrane Proteins/genetics , Molecular Sequence Data , Mutagenesis , Operon/genetics , Phylogeny
2.
J Biol Chem ; 275(2): 1050-6, 2000 Jan 14.
Article in English | MEDLINE | ID: mdl-10625645

ABSTRACT

Osmoprotectants exogenously supplied to a hyperosmotic culture medium are efficiently imported and amassed by stressed cells of Escherichia coli. In addition to their evident role in the recovery and maintenance of osmotic balance, these solutes should play an important role on the behavior of cellular macromolecules, for example in the process of protein folding. Using a random chemical mutagenesis approach, a conditional lysine auxotrophic mutant was obtained. The growth of this mutant was restored by addition of either lysine or osmoprotectants including glycine betaine (GB) in the minimal medium. The growth rate increased proportionally with the augmentation of the intracellular GB concentration. The mutation was located in the lysA gene and resulted in the substitution of the Ser at position 384 by Phe of the diaminopimelate decarboxylase (DAPDC), which catalyzes the conversion of meso-diaminopimelate to L-lysine. We purified both the wild type DAPDC and the mutated DAPDC-sf and demonstrated that GB was capable of activating DAPDC-sf in vitro, thus confirming the in vivo results. Most importantly, we showed that the activation was correlated with a conformational change of DAPDC-sf. Taken together, these results show, for the first time, that GB may actively assist in vivo protein folding in a chaperone-like manner.


Subject(s)
Bacterial Proteins/genetics , Bacterial Proteins/metabolism , Betaine/metabolism , Betaine/pharmacology , Carboxy-Lyases/metabolism , Escherichia coli Proteins , Escherichia coli/physiology , Protein Folding , Biological Transport , Carboxy-Lyases/genetics , Carboxy-Lyases/isolation & purification , Chromatography, Gel , Cloning, Molecular , Culture Media , Diaminopimelic Acid/metabolism , Escherichia coli/drug effects , Escherichia coli/genetics , Genotype , Plasmids , Recombinant Proteins/chemistry , Recombinant Proteins/isolation & purification , Recombinant Proteins/metabolism , Restriction Mapping
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