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dc.contributor.authorSchubert, R.en
dc.contributor.authorDodd, I.en
dc.contributor.authorEgan, J.en
dc.contributor.authorShearwin, K.en
dc.identifier.citationGenes & Development, 2007; 21(19):2461-2472en
dc.description.abstractCI represses cro; Cro represses cI. This double negative feedback loop is the core of the classical CI-Cro epigenetic switch of bacteriophage lambda. Despite the classical status of this switch, the role in lambda development of Cro repression of the P(RM) promoter for CI has remained unclear. To address this, we created binding site mutations that strongly impaired Cro repression of P(RM) with only minimal effects on CI regulation of P(RM). These mutations had little impact on lambda development after infection but strongly inhibited the transition from lysogeny to the lytic pathway. We demonstrate that following inactivation of CI by ultraviolet treatment of lysogens, repression of P(RM) by Cro is needed to prevent synthesis of new CI that would otherwise significantly impede lytic development. Thus a bistable CI-Cro circuit reinforces the commitment to a developmental transition.en
dc.description.statementofresponsibilityRachel A. Schubert, Ian B. Dodd, J. Barry Egan and Keith E. Shearwinen
dc.publisherCold Spring Harbor Laboratory Pressen
dc.rightsCopyright © 2007 by Cold Spring Harbor Laboratory Press.en
dc.subjectBacteriophage lambda; Prophages; DNA-Binding Proteins; Repressor Proteins; Lysogeny; Virus Activation; Gene Expression Regulation, Viral; Base Sequence; Mutation; Molecular Sequence Data; Viral Regulatory and Accessory Proteins; Promoter Regions, Geneticen
dc.titleCro’s role in the CI–Cro bistable switch is critical for λ’s transition from lysogeny to lytic developmenten
dc.title.alternativeCro's role in the CI-Cro bistable switch is critical for lambda's transition from lysogeny to lytic developmenten
dc.typeJournal articleen
pubs.library.collectionMolecular and Biomedical Science publicationsen
Appears in Collections:Molecular and Biomedical Science publications

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