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PMID: 9822815 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Inducer exclusion in Escherichia coli by non-PTS substrates: the role of the PEP to pyruvate ratio in determining the phosphorylation state of enzyme IIAGlc.

Molecular microbiology ·Vol. 30 ·No. 3 ·1998-11-00 ·Pages 487-98

Hogema BM, Arents JC, Bader R, Eijkemans K, Yoshida H, Takahashi H, Aiba H, Postma PW

Abstract

The main mechanism causing catabolite repression in Escherichia coli is the dephosphorylation of enzyme IIAGlc, one of the enzymes of the phosphoenolpyruvate:carbohydrate phosphotransferase system (PTS). The PTS is involved in the uptake of a large number of carbohydrates that are phosphorylated during transport, phosphoenolpyruvate (PEP) being the phosphoryl donor. Dephosphorylation of enzyme IIAGlc causes inhibition of uptake of a number of non-PTS carbon sources, a process called inducer exclusion. In this paper, we show that dephosphorylation of enzyme IIAGlc is not only caused by the transport of PTS carbohydrates, as has always been thought, and that an additional mechanism causing dephosphorylation exists. Direct monitoring of the phosphorylation state of enzyme IIAGlc also showed that many carbohydrates that are not transported by the PTS caused dephosphorylation during growth. In the case of glucose 6-phosphate, it was shown that transport and the first metabolic step are not involved in the dephosphorylation of enzyme IIAGlc, but that later steps in the glycolysis are essential. Evidence is provided that the [PEP]-[pyruvate] ratio, the driving force for the phosphorylation of the PTS proteins, determines the phosphorylation state of enzyme IIAGlc. The implications of these new findings for our view on catabolite repression and inducer exclusion are discussed.

MeSH Terms
Bacterial Proteins/metabolism Biological Transport/physiology Carbohydrate Metabolism Carbohydrates/pharmacology Enzyme Induction/physiology Escherichia coli/enzymology,metabolism Glucose-6-Phosphate/pharmacology Methylgalactosides/metabolism Mutation/genetics Phosphoenolpyruvate/metabolism Phosphoenolpyruvate Sugar Phosphotransferase System/metabolism Phosphoproteins/metabolism Phosphorylation Pyruvic Acid/metabolism Thiogalactosides/metabolism
Chemicals
Bacterial Proteins Carbohydrates Methylgalactosides Phosphoproteins Thiogalactosides thiomethylgalactoside Glucose-6-Phosphate Phosphoenolpyruvate Pyruvic Acid Phosphoenolpyruvate Sugar Phosphotransferase System phosphoenolpyruvate-glucose phosphotransferase
Authors & Affiliations
8 authors, click to expand affiliations / ORCID
Hogema B M
E.C. Slater Institute, BioCentrum, University of Amsterdam, Plantage Muidergracht 12, 1018 TV Amsterdam, The Netherlands.
Arents J C
Bader R
Eijkemans K
Yoshida H
Takahashi H
Aiba H
Postma P W
Article Info
Journal
Molecular microbiology
Abbr.
Mol Microbiol
ISSN
0950-382X
Published
1998-11-00
Pages
487-98
Language
English
Region
England
NLM ID
8712028
Subset
IM
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