NanR, a Transcriptional Regulator That Binds to the Promoters of Genes Involved in Sialic Acid Metabolism in the Anaerobic Pathogen Clostridium perfringens

dc.contributor.authorTherit, B.en
dc.contributor.authorCheung, J. K.en
dc.contributor.authorRood, J. I.en
dc.contributor.authorMelville, S. B.en
dc.contributor.departmentBiological Sciencesen
dc.date.accessioned2017-02-06T16:16:25Zen
dc.date.available2017-02-06T16:16:25Zen
dc.date.issued2015-07-21en
dc.description.abstractAmong many other virulence factors, Clostridium perfringens produces three sialidases NanH, NanI and NanJ. NanH lacks a secretion signal peptide and is predicted to be an intracellular enzyme, while NanI and NanJ are secreted. Previously, we had identified part of an operon encoding NanE (epimerase) and NanA (sialic acid lyase) enzymes. Further analysis of the entire operon suggests that it encodes a complete pathway for the transport and metabolism of sialic acid along with a putative transcriptional regulator, NanR. The addition of 30 mM N-acetyl neuraminic acid (Neu5Ac) to a semi-defined medium significantly enhanced the growth yield of strain 13, suggesting that Neu5Ac can be used as a nutrient. C. perfringens strain 13 lacks a nanH gene, but has NanI- and NanJ-encoding genes. Analysis of nanI, nanJ, and nanInanJ mutants constructed by homologous recombination revealed that the expression of the major sialidase, NanI, was induced by the addition of Neu5Ac to the medium, and that in separate experiments, the same was true of a nanIgusA transcriptional fusion. For the nanI and nanJ genes, primer extension identified three and two putative transcription start sites, respectively. Gel mobility shift assays using purified NanR and DNA from the promoter regions of the nanI and nanE genes showed high affinity, specific binding by NanR. We propose that NanR is a global regulator of sialic acidassociated genes and that it responds, in a positive feedback loop, to the concentration of sialic acid in the cell.en
dc.description.versionPublished versionen
dc.format.extent17 pagesen
dc.identifier.doihttps://doi.org/10.1371/journal.pone.0133217en
dc.identifier.issn1932-6203en
dc.identifier.issue7en
dc.identifier.urihttp://hdl.handle.net/10919/74941en
dc.identifier.volume10en
dc.language.isoenen
dc.publisherPLOSen
dc.relation.urihttp://gateway.webofknowledge.com/gateway/Gateway.cgi?GWVersion=2&SrcApp=PARTNER_APP&SrcAuth=LinksAMR&KeyUT=WOS:000358547600073&DestLinkType=FullRecord&DestApp=ALL_WOS&UsrCustomerID=930d57c9ac61a043676db62af60056c1en
dc.rightsCreative Commons Attribution 4.0 Internationalen
dc.rights.urihttp://creativecommons.org/licenses/by/4.0/en
dc.subjectbacillus-subtilisen
dc.subjectrepressor nanren
dc.subjectalpha-toxinen
dc.subjectexpressionen
dc.subjectproteinen
dc.subjectvirulenceen
dc.subjectmutantsen
dc.subjectcloningen
dc.subjectcpeen
dc.subjectsporulationen
dc.titleNanR, a Transcriptional Regulator That Binds to the Promoters of Genes Involved in Sialic Acid Metabolism in the Anaerobic Pathogen Clostridium perfringensen
dc.title.serialPLOS ONEen
dc.typeArticle - Refereeden
pubs.organisational-group/Virginia Techen
pubs.organisational-group/Virginia Tech/All T&R Facultyen
pubs.organisational-group/Virginia Tech/Faculty of Health Sciencesen
pubs.organisational-group/Virginia Tech/Scienceen
pubs.organisational-group/Virginia Tech/Science/Biological Sciencesen
pubs.organisational-group/Virginia Tech/Science/COS T&R Facultyen

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