Unknown,Transcriptomics,Genomics,Proteomics

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Flagellar regulon studies


ABSTRACT: This study examined the genes under the control of FlhDC and sigmaF in E. coli. Keywords: wild-type, deletion and overexepression strains Under defined steady-state growth condition, we used two different genetic approaches to alter the modulator concentration in cells; (1) moderately expressing FlhDC or sigmaF from anhydrotetracycline (aTc) inducible and Tet repressor-controlled PLtet promoter in a plasmid-borne flhDC or fliA gene; (2) disrupting the expression of FlhDC or sigmaF in flhDC or fliA deletion mutant strains. Samples were taken from culture with wild-type or deletion strains at mid log phase (OD=0.2) or from overexpression strains at mid log phase (OD=0.2) before or 5 minutes after moderate induction. Samples were then RNA-stabilized using Qiagen RNAProtect Bacterial Reagent (Qiagen). Total RNA was then isolated using MasterPure kits (Epicentre Technologies). Purified RNA was reverse-transcribed to cDNA, labeled and hybridized to Affymetrix GeneChip E. coli Antisense Genome Arrays as recommended in the technical manual (www.affymetrix.com).

ORGANISM(S): Escherichia coli

SUBMITTER: Kai Zhao 

PROVIDER: E-GEOD-5818 | biostudies-arrayexpress |

REPOSITORIES: biostudies-arrayexpress

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Publications

Adaptation in bacterial flagellar and motility systems: from regulon members to 'foraging'-like behavior in E. coli.

Zhao Kai K   Liu Mingzhu M   Burgess Richard R RR  

Nucleic acids research 20070618 13


Bacterial flagellar motility and chemotaxis help cells to reach the most favorable environments and to successfully compete with other micro-organisms in response to external stimuli. Escherichia coli is a motile gram-negative bacterium, and the flagellar regulon in E. coli is controlled by a master regulator FlhDC as well as a second regulator, flagellum-specific sigma factor, sigma(F). To define the physiological role of these two regulators, we carried out transcription profiling experiments  ...[more]

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