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      The Shigella ProU system is required for osmotic tolerance and virulence

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          ABSTRACT

          To cope with hyperosmotic stress encountered in the environments and in the host, the pathogenic as well as non-pathogenic microbes use diverse transport systems to obtain osmoprotectants. To study the role of Shigella sonnei ProU system in response to hyperosmotic stress and virulence, we constructed deletion and complementation strains of proV and used an RNAi approach to silence the whole ProU operon. We compared the response between wild type and the mutants to the hyperosmotic pressure in vitro, and assessed virulence properties of the mutants using gentamicin protection assay as well as Galleria mellonella moth larvae model. In response to osmotic stress by either NaCl or KCl, S. sonnei highly up-regulates transcription of proVWX genes. Supplementation of betaine greatly elevates the growth of the wild type S. sonnei but not the proV mutants in M9 medium containing 0.2 M NaCl or 0.2 M KCl. The proV mutants are also defective in intracellular growth compared with the wild type. The moth larvae model of G. mellonella shows that either deletion of proV gene or knockdown of proVWX transcripts by RNAi significantly attenuates virulence. ProU system in S. sonnei is required to cope with osmotic stress for survival and multiplication in vitro, and for infection.

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          Author and article information

          Journal
          Virulence
          Virulence
          KVIR
          kvir20
          Virulence
          Taylor & Francis
          2150-5594
          2150-5608
          2017
          24 August 2016
          : 8
          : 4 , Carbapenem-Resistant Enterobacteriaceae
          : 362-374
          Affiliations
          [a ] Strathclyde Institute of Pharmacy and Biomedical Sciences (SIPBS), University of Strathclyde , Glasgow, Scotland, UK
          [b ] Department of Microbiology and Immunology, Faculty of Pharmacy, Helwan University , Cairo, Egypt
          [c ] Department of Microbiology and Immunology, Faculty of Pharmacy, Kafr Elsheikh University , Kafr Elsheikh, Egypt
          Author notes
          CONTACT Jun Yu jun.yu@ 123456strath.ac.uk Strathclyde Institute of Pharmacy and Biomedical Sciences, University of Strathclyde, Hamnett Wing , 161 Cathedral St., Glasgow, Scotland G4 0RE, UK

          Supplemental data for this article can be accessed on the publisher's website.

          Article
          PMC5477723 PMC5477723 5477723 1227906
          10.1080/21505594.2016.1227906
          5477723
          27558288
          488b2e0e-de28-49ed-a319-35f32cfa2c32
          © 2017 Taylor & Francis
          History
          : 26 April 2016
          : 8 August 2016
          : 18 August 2016
          Page count
          Figures: 5, Tables: 0, References: 53, Pages: 13
          Funding
          Funded by: the Egyptian Culture Council
          Rasha Y. Mahmoud is supported by the Egyptian Culture Council under the Channel Scheme.
          Categories
          Research Paper

          osmoprotectants,osmotic tolerance,ProU,RNAi, Shigella sonnei

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