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      The Irr and RirA Proteins Participate in a Complex Regulatory Circuit and Act in Concert To Modulate Bacterioferritin Expression in Ensifer meliloti 1021

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          ABSTRACT

          In this work we found that the bfr gene of the rhizobial species Ensifer meliloti, encoding a bacterioferritin iron storage protein, is involved in iron homeostasis and the oxidative stress response. This gene is located downstream of and overlapping the smc03787 open reading frame (ORF). No well-predicted RirA or Irr boxes were found in the region immediately upstream of the bfr gene although two presumptive RirA boxes and one presumptive Irr box were present in the putative promoter of smc03787. We demonstrate that bfr gene expression is enhanced under iron-sufficient conditions and that Irr and RirA modulate this expression. The pattern of bfr gene expression as well as the response to Irr and RirA is inversely correlated to that of smc03787. Moreover, our results suggest that the small RNA SmelC759 participates in RirA- and Irr-mediated regulation of bfr expression and that additional unknown factors are involved in iron-dependent regulation.

          IMPORTANCE E. meliloti belongs to the Alphaproteobacteria, a group of bacteria that includes several species able to associate with eukaryotic hosts, from mammals to plants, in a symbiotic or pathogenic manner. Regulation of iron homeostasis in this group of bacteria differs from that found in the well-studied Gammaproteobacteria. In this work we analyzed the effect of rirA and irr mutations on bfr gene expression. We demonstrate the effect of an irr mutation on iron homeostasis in this bacterial genus. Moreover, results obtained indicate a complex regulatory circuit where multiple regulators, including RirA, Irr, the small RNA SmelC759, and still unknown factors, act in concert to balance bfr gene expression.

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          Author and article information

          Contributors
          Role: Editor
          Journal
          Appl Environ Microbiol
          Appl. Environ. Microbiol
          aem
          aem
          AEM
          Applied and Environmental Microbiology
          American Society for Microbiology (1752 N St., N.W., Washington, DC )
          0099-2240
          1098-5336
          16 June 2017
          1 August 2017
          15 August 2017
          : 83
          : 16
          : e00895-17
          Affiliations
          [a ]Biochemical and Microbial Genomics Department, Instituto de Investigaciones Biológicas Clemente Estable, MEC, Montevideo, Uruguay
          [b ]Universidad Nacional de Quilmes-CONICET, Buenos Aires, Argentina
          [c ]State University of New York at Buffalo, Buffalo, New York, USA
          North Carolina State University
          Author notes
          Address correspondence to Elena Fabiano, efabiano@ 123456iibce.edu.uy .

          Citation Costa D, Amarelle V, Valverde C, O'Brian MR, Fabiano E. 2017. The Irr and RirA proteins participate in a complex regulatory circuit and act in concert to modulate bacterioferritin expression in Ensifer meliloti 1021. Appl Environ Microbiol 83:e00895-17. https://doi.org/10.1128/AEM.00895-17.

          Article
          PMC5541210 PMC5541210 5541210 00895-17
          10.1128/AEM.00895-17
          5541210
          28625986
          bb959a33-70ff-4628-ad01-1d65204b2e64
          Copyright © 2017 American Society for Microbiology.

          All Rights Reserved.

          History
          : 20 April 2017
          : 6 June 2017
          Page count
          supplementary-material: 1, Figures: 7, Tables: 1, Equations: 0, References: 51, Pages: 14, Words: 9060
          Funding
          Funded by: Agencia Nacional de Innovación e Investigación
          Award ID: ANII (POS_NAC_2012_1_8635)
          Award Recipient : Daniela Costa
          Funded by: Programa de Desarrollo de las Ciencias Básicas
          Award Recipient : Elena Rossana Fabiano
          Categories
          Genetics and Molecular Biology
          Custom metadata
          August 2017

          iron regulation, Sinorhizobium ,bacterioferritin,iron metabolism

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