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PMID: 10469172 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Negative regulation of the pts operon by Mlc: mechanism underlying glucose induction in Escherichia coli.

Genes to cells : devoted to molecular & cellular mechanisms ·Vol. 4 ·No. 7 ·1999-07-00 ·Pages 391-9

Tanaka Y, Kimata K, Inada T, Tagami H, Aiba H

Abstract

The pts operon of Escherichia coli consists of three genes ptsH, ptsI and crr, each encoding for central components of the phosphoenolpyruvate: carbohydrate phosphotransferase system, HPr, enzyme I and IIAGlc, respectively. Transcription of the pts operon is stimulated when glucose is present in the culture medium. One of the two major promoters, P0, is responsible for this glucose induction. However, no regulatory protein responsible for the glucose induction of the pts operon has been identified yet and molecular mechanism by which glucose stimulates the pts transcription is not known. We found by Northern blotting that the pts mRNA levels in cells lacking Mlc, a new global repressor of carbohydrate metabolism, were increased without external glucose and that the addition of glucose had no effect on the pts mRNA levels in the mutant cells. Western blotting revealed that the enzyme I level in the mlc- cells was also elevated without glucose and no further increase in the enzyme I level was observed in the presence of glucose. S1 analysis revealed that transcription of the glucose-sensitive promoter, P0, occurs constitutively in the mlc- cells independently from the external glucose. In vitro transcription studies indicated that Mlc strongly inhibited P0 transcription. DNase I footprinting experiment revealed that Mlc bound to P0 promoter region to prevent RNA polymerase binding at P0. We conclude that Mlc is a repressor for the pts transcription acting as a major regulatory protein involved in the glucose induction of pts operon. We propose that glucose induces the pts transcription by modulating the Mlc activity. The mechanism by which glucose modulates the Mlc action remains to be studied.

MeSH Terms
Bacterial Proteins/genetics,isolation & purification,metabolism Base Sequence Blotting, Western Cyclic AMP Receptor Protein/genetics,metabolism DNA/genetics,metabolism DNA Footprinting DNA-Binding Proteins/genetics,isolation & purification,metabolism DNA-Directed RNA Polymerases/antagonists & inhibitors,metabolism Escherichia coli/drug effects,enzymology,genetics Escherichia coli Proteins Gene Expression Regulation, Bacterial/drug effects Genes, Bacterial/genetics,physiology Glucose/metabolism,pharmacology Mutation Operon/genetics Phosphoenolpyruvate Sugar Phosphotransferase System/genetics,metabolism Promoter Regions, Genetic/genetics RNA, Messenger/genetics,metabolism Repressor Proteins/genetics,isolation & purification,metabolism Response Elements/genetics Transcription, Genetic/drug effects,genetics
Chemicals
Bacterial Proteins Cyclic AMP Receptor Protein DNA-Binding Proteins Escherichia coli Proteins Mlc protein, E coli RNA, Messenger Repressor Proteins DNA Phosphoenolpyruvate Sugar Phosphotransferase System DNA-Directed RNA Polymerases Glucose
Authors & Affiliations
5 authors, click to expand affiliations / ORCID
Tanaka Y
Division of Biological Science, Graduate School of Science, Nagoya University, Chikusa, Nagoya 464-8601, Japan.
Kimata K
Inada T
Tagami H
Aiba H
Article Info
Journal
Genes to cells : devoted to molecular & cellular mechanisms
Abbr.
Genes Cells
ISSN
1356-9597
Published
1999-07-00
Pages
391-9
Language
English
Region
England
NLM ID
9607379
Subset
IM
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