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dc.contributor.authorMitra, Avishek
dc.contributor.authorFay, Pamela A.
dc.contributor.authorMorgan, Jason K.
dc.contributor.authorVendura, Khoury W.
dc.contributor.authorVersaggi, Salvatore L.
dc.contributor.authorRiordan, James T.
dc.contributor.editorCascales, Eric
dc.date.accessioned2023-02-16T16:48:21Z
dc.date.available2023-02-16T16:48:21Z
dc.date.issued2012
dc.identifier.citationMitra, A., Fay, P. A., Morgan, J. K., Vendura, K. W., Versaggi, S. L., Riordan, J. T. (2012). Sigma Factor N, Liaison to an ntrC and rpoS Dependent Regulatory Pathway Controlling Acid Resistance and the LEE in Enterohemorrhagic Escherichia coli. PLOS ONE, 7(9), pp. e46288-. https://doi.org/10.1371/journal.pone.0046288
dc.identifier.issn1932-6203
dc.identifier.urihttps://hdl.handle.net/11244/337043
dc.description.abstractEnterohemorrhagic Escherichia coli (EHEC) is dependent on acid resistance for gastric passage and low oral infectious dose, and the locus of enterocyte effacement (LEE) for intestinal colonization. Mutation of rpoN, encoding sigma factor N (σ(N)), dramatically alters the growth-phase dependent regulation of both acid resistance and the LEE. This study reports on the determinants of σ(N)-directed acid resistance and LEE expression, and the underlying mechanism attributable to this phenotype. Glutamate-dependent acid resistance (GDAR) in TW14359ΔrpoN correlated with increased expression of the gadX-gadW regulatory circuit during exponential growth, whereas upregulation of arginine-dependent acid resistance (ADAR) genes adiA and adiC in TW14359ΔrpoN did not confer acid resistance by the ADAR mechanism. LEE regulatory (ler), structural (espA and cesT) and effector (tir) genes were downregulated in TW14359ΔrpoN, and mutation of rpoS encoding sigma factor 38 (σ(S)) in TW14359ΔrpoN restored acid resistance and LEE genes to WT levels. Stability, but not the absolute level, of σ(S) was increased in TW14359ΔrpoN; however, increased stability was not solely attributable to the GDAR and LEE expression phenotype. Complementation of TW14359ΔrpoN with a σ(N) allele that binds RNA polymerase (RNAP) but not DNA, did not restore WT levels of σ(S) stability, gadE, ler or GDAR, indicating a dependence on transcription from a σ(N) promoter(s) and not RNAP competition for the phenotype. Among a library of σ(N) enhancer binding protein mutants, only TW14359ΔntrC, inactivated for nitrogen regulatory protein NtrC, phenocopied TW14359ΔrpoN for σ(S) stability, GDAR and ler expression. The results of this study suggest that during exponential growth, NtrC-σ(N) regulate GDAR and LEE expression through downregulation of σ(S) at the post-translational level; likely by altering σ(S) stability or activity. The regulatory interplay between NtrC, other EBPs, and σ(N)-σ(S), represents a mechanism by which EHEC can coordinate GDAR, LEE expression and other cellular functions, with nitrogen availability and physiologic stimuli.
dc.formatapplication/pdf
dc.languageeng
dc.publisherPublic Library of Science (PLoS)
dc.relation.ispartofPLOS ONE, 7 (9)
dc.relation.urihttps://www.ncbi.nlm.nih.gov/pubmed/23029465
dc.relation.urihttp://dx.doi.org/10.1371/journal.pone.0046288
dc.rightsThis material has been previously published. In the Oklahoma State University Library's institutional repository this version is made available through the open access principles and the terms of agreement/consent between the author(s) and the publisher. The permission policy on the use, reproduction or distribution of the material falls under fair use for educational, scholarship, and research purposes. Contact Digital Resources and Discovery Services at lib-dls@okstate.edu or 405-744-9161 for further information.
dc.subject.meshAcids
dc.subject.meshAmino Acid Transport Systems
dc.subject.meshAntiporters
dc.subject.meshAraC Transcription Factor
dc.subject.meshArginine
dc.subject.meshBacterial Proteins
dc.subject.meshCarboxy-Lyases
dc.subject.meshDNA-Directed RNA Polymerases
dc.subject.meshEnterocytes
dc.subject.meshEnterohemorrhagic Escherichia coli
dc.subject.meshEscherichia coli Proteins
dc.subject.meshGene Expression Regulation, Bacterial
dc.subject.meshGlutamic Acid
dc.subject.meshHumans
dc.subject.meshHydrogen-Ion Concentration
dc.subject.meshMutation
dc.subject.meshNitrogen
dc.subject.meshPII Nitrogen Regulatory Proteins
dc.subject.meshPromoter Regions, Genetic
dc.subject.meshProtein Binding
dc.subject.meshRNA Polymerase Sigma 54
dc.subject.meshSigma Factor
dc.subject.meshSignal Transduction
dc.subject.meshTranscription Factors
dc.titleSigma factor n, liaison to an ntrC and rpoS dependent regulatory pathway controlling acid resistance and the LEE in enterohemorrhagic Escherichia coli
dc.date.updated2023-02-15T23:01:44Z
dc.noteopen access status: Gold OA
dc.identifier.doi10.1371/journal.pone.0046288
dc.description.departmentMicrobiology and Molecular Genetics
dc.type.genreArticle
dc.type.materialText
dc.subject.keywordsVaccine Related
dc.subject.keywordsPrevention
dc.subject.keywordsGenetics
dc.subject.keywordsInfectious Diseases
dc.subject.keywordsBiodefense
dc.subject.keywordsDigestive Diseases
dc.subject.keywordsEmerging Infectious Diseases
dc.subject.keywordsGeneral Science & Technology
dc.relation.oaurlhttps://pubmed.ncbi.nlm.nih.gov/23029465/
dc.identifier.authorORCID: 0000-0003-0243-2045 (Mitra, Avishek)
dc.identifier.essn1932-6203


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