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PMID: 15130117 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Genome-wide analysis of transcriptional hierarchy and feedback regulation in the flagellar system of Helicobacter pylori.

Molecular microbiology ·Vol. 52 ·No. 4 ·2004-05-00 ·Pages 947-61

Niehus E, Gressmann H, Ye F, Schlapbach R, Dehio M, Dehio C, Stack A, Meyer TF, Suerbaum S, Josenhans C

Abstract

The flagellar system of Helicobacter pylori, which comprises more than 40 mostly unclustered genes, is essential for colonization of the human stomach mucosa. In order to elucidate the complex transcriptional circuitry of flagellar biosynthesis in H. pylori and its link to other cell functions, mutants in regulatory genes governing flagellar biosynthesis (rpoN, flgR, flhA, flhF, HP0244) and whole-genome microarray technology were used in this study. The regulon controlled by RpoN, its activator FlgR (FleR) and the cognate histidine kinase HP0244 (FleS) was characterized on a genome-wide scale for the first time. Seven novel genes (HP1076, HP1233, HP1154/1155, HP0366/367, HP0869) were identified as belonging to RpoN-associated flagellar regulons. The hydrogenase accessory gene HP0869 was the only annotated non-flagellar gene in the RpoN regulon. Flagellar basal body components FlhA and FlhF were characterized as functional equivalents to master regulators in H. pylori, as their absence led to a general reduction of transcripts in the RpoN (class 2) and FliA (class 3) regulons, and of 24 genes newly attributed to intermediate regulons, under the control of two or more promoters. FlhA- and FlhF-dependent regulons comprised flagellar and non-flagellar genes. Transcriptome analysis revealed that negative feedback regulation of the FliA regulon was dependent on the antisigma factor FlgM. FlgM was also involved in FlhA- but not FlhF-dependent feedback control of the RpoN regulon. In contrast to other bacteria, chemotaxis and flagellar motor genes were not controlled by FliA or RpoN. A true master regulator of flagellar biosynthesis is absent in H. pylori, consistent with the essential role of flagellar motility and chemotaxis for this organism.

MeSH Terms
Bacterial Proteins/genetics,physiology Base Sequence Chemotaxis/genetics DNA-Binding Proteins/genetics,physiology DNA-Directed RNA Polymerases/genetics,physiology Feedback, Physiological Flagella/genetics,physiology Gene Expression Profiling Gene Expression Regulation, Bacterial Genes, Bacterial Helicobacter pylori/genetics,physiology Histidine Kinase Membrane Proteins/genetics,physiology Molecular Sequence Data Monomeric GTP-Binding Proteins/genetics,physiology Mutation Oligonucleotide Array Sequence Analysis Promoter Regions, Genetic Protein Kinases/genetics,physiology RNA Polymerase Sigma 54 Regulon Sequence Alignment Sigma Factor/genetics,physiology Signal Transduction Transcription, Genetic
Chemicals
Bacterial Proteins DNA-Binding Proteins FlhA protein, Bacteria FliA protein, Bacteria Membrane Proteins Sigma Factor FlgM protein, Bacteria flhF protein, Bacteria Protein Kinases Histidine Kinase DNA-Directed RNA Polymerases RNA Polymerase Sigma 54 Monomeric GTP-Binding Proteins
Authors & Affiliations
10 authors, click to expand affiliations / ORCID
Niehus Eike
Institute of Hygiene and Microbiology, University of Wuerzburg, Josef-Schneider-Strasse 2, D-97080 Wuerzburg, Germany.
Gressmann Helga
Ye Fang
Schlapbach Ralph
Dehio Michaela
Dehio Christoph
Stack Allison
Meyer Thomas F
Suerbaum Sebastian
Josenhans Christine
Article Info
Journal
Molecular microbiology
Abbr.
Mol Microbiol
ISSN
0950-382X
Published
2004-05-00
Pages
947-61
Language
English
Region
England
NLM ID
8712028
Subset
IM
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