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Mechanism of hcnA mRNA recognition in the Gac/Rsm signal transduction pathway of Pseudomonas fluorescens.

Mechanism of hcnA mRNA recognition in the Gac/Rsm signal transduction pathway of Pseudomonas fluorescens. Research Abstract Details 

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  • Mechanism of hcnA mRNA recognition in the Gac/Rsm signal transduction pathway of Pseudomonas fluorescens. Abstract Text:

    karine lapougeKarine Lapouge,elena sinevaElena Sineva,magnus lindellMagnus Lindell,katja starkeKatja Starke,carol s bakerCarol S Baker,paul babitzkePaul Babitzke,dieter haasDieter Haas,karine lapougeKarine Lapouge,elena sinevaElena Sineva,magnus lindellMagnus Lindell,katja starkeKatja Starke,carol s bakerCarol S Baker,paul babitzkePaul Babitzke,dieter haasDieter Haas,

    In the plant-beneficial bacterium Pseudomonas fluorescens CHA0, the expression of antifungal exoproducts is controlled by the GacS/GacA two-component system. Two RNA binding proteins (RsmA, RsmE) ensure effective translational repression of exoproduct mRNAs. At high cell population densities, GacA induces three small RNAs (RsmX, RsmY, RsmZ) which sequester both RsmA and RsmE, thereby relieving translational repression. Here we systematically analyse the features that allow the RNA binding proteins to interact strongly with the 5' untranslated leader mRNA of the P. fluorescens hcnA gene (encoding hydrogen cyanide synthase subunit A). We obtained evidence for three major RsmA/RsmE recognition elements in the hcnA leader, based on directed mutagenesis, RsmE footprints and toeprints, and in vivo expression data. Two recognition elements were found in two stem-loop structures whose existence in the 5' leader region was confirmed by lead(II) cleavage analysis. The third recognition element, which overlapped the hcnA Shine-Dalgarno sequence, was postulated to adopt either an open conformation, which would favour ribosome binding, or a stem-loop structure, which may form upon interaction with RsmA/RsmE and would inhibit access of ribosomes. Effective control of hcnA expression by the Gac/Rsm system appears to result from the combination of the three appropriately spaced recognition elements.

    Mechanism of hcnA mRNA recognition in the Gac/Rsm signal transduction pathway of Pseudomonas fluorescens. Publishing Authors By Initials

    k lapougeK Lapouge,e sinevaE Sineva,m lindellM Lindell,k starkeK Starke,cs bakerCS Baker,p babitzkeP Babitzke,d haasD Haas,k lapougeK Lapouge,e sinevaE Sineva,m lindellM Lindell,k starkeK Starke,cs bakerCS Baker,p babitzkeP Babitzke,d haasD Haas,

    For similar abstracts research abstracts see: abstracts research

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    Mechanism of hcnA mRNA recognition in the Gac/Rsm signal transduction pathway of Pseudomonas fluorescens. Journal Published:

    PUBLICATION TYPE: Research Support, Non-U.S. Gov

    Journal: Molecular microbiology

    VOLUME: 66

    Page Numbers: 341-56

    Journal Abbreviation: Mol. Microbiol.

    ISSN: 0950-382X

    DAY: 10

    MONTH: 09

    YEAR: 2007

    Mechanism of hcnA mRNA recognition in the Gac/Rsm signal transduction pathway of Pseudomonas fluorescens. Information

    Number of References:

    LANGUAGE: eng

    NlmUniqueID: 8712028

    Mechanism of hcnA mRNA recognition in the Gac/Rsm signal transduction pathway of Pseudomonas fluorescens. Keywords Mesh Terms:

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    Grant and Affiliation Information for Mechanism of hcnA mRNA recognition in the Gac/Rsm signal transduction pathway of Pseudomonas fluorescens.

    AFFILIATION: Département de Microbiologie Fondamentale, Université de Lausanne, Bâtiment Biophore, CH-1015 Lausanne, Switzerland.

    Country: England

    England Research PublicationEngland Research Publication

    AGENCY: United States NIGMS

    GRANT: GM59969

    ACRONYM: GM

    MEDLINETA: Mol Microbiol

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