6533b82bfe1ef96bd128d90c

RESEARCH PRODUCT

LrhA as a new transcriptional key regulator of flagella, motility and chemotaxis genes in Escherichia coli

B. WackwitzVolker F. WendischGottfried UndenTino PolenDaniela LehnenC. Blumer

subject

DNA BacterialbindingTranscription GeneticRecombinant Fusion ProteinsMolecular Sequence DataMutantacetyl phosphatelac operonBiologymedicine.disease_causeMicrobiologyh-ns proteink-12lysr homologBacterial ProteinsGenes ReporterTranscription (biology)expressionEscherichia colimedicinernaRNA MessengerPromoter Regions GeneticMolecular BiologyGeneEscherichia coliDerepressionOligonucleotide Array Sequence AnalysisBase SequenceChemotaxisEscherichia coli ProteinsGene Expression ProfilingPromoterChemotaxisGene Expression Regulation BacterialMolecular biologyco2 fixationmaster operonDNA-Binding ProteinsRNA BacterialLac OperonFlagellaTrans-ActivatorssignalTranscription Factors

description

The function of the LysR-type regulator LrhA of Escherichia coli was defined by comparing whole-genome mRNA profiles from wild-type E. coli and an isogenic lrhA mutant on a DNA microarray. In the lrhA mutant, a large number (48) of genes involved in flagellation, motility and chemotaxis showed relative mRNA abundances increased by factors between 3 and 80. When a representative set of five flagellar, motility and chemotaxis genes was tested in lacZ reporter gene fusions, similar factors for derepression were found in the lrhA mutant. In gel retardation experiments, the LrhA protein bound specifically to flhD and lrhA promoter DNA (apparent K-D approximate to 20 nM), whereas the promoters of fliC , fliA and trg were not bound by LrhA. The expression of flhDC (encoding FlhD(2)C(2)) was derepressed by a factor of 3.5 in the lrhA mutant. FlhD(2)C(2) is known as the master regulator for the expression of flagellar and chemotaxis genes. By DNase I footprinting, LrhA binding sites at the flhDC and lrhA promoters were identified. The lrhA gene was under positive autoregulation by LrhA as shown by gel retardation and lrhA expression studies. It is suggested that LrhA is a key regulator controlling the transcription of flagellar, motility and chemotaxis genes by regulating the synthesis and concentration of FlhD(2)C(2).

10.1046/j.1365-2958.2002.03032.xhttps://pub.uni-bielefeld.de/record/1895115