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Staphylococcal aconitase expression during iron deficiency is controlled by an sRNA-driven feedforward loop and moonlighting activity

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  • Additional Information
    • Contributors:
      Institut de Biologie Intégrative de la Cellule (I2BC); Commissariat à l'énergie atomique et aux énergies alternatives (CEA)-Université Paris-Saclay-Centre National de la Recherche Scientifique (CNRS); ARN régulateurs bactériens et médecine (BRM); Université de Rennes (UR)-Institut National de la Santé et de la Recherche Médicale (INSERM)-Structure Fédérative de Recherche en Biologie et Santé de Rennes (Biosit : Biologie - Santé - Innovation Technologique); Institut de Chimie des Substances Naturelles (ICSN); Institut de Chimie - CNRS Chimie (INC-CNRS)-Université Paris-Saclay-Centre National de la Recherche Scientifique (CNRS); Agence Nationale pour la Recherche ANR-19-CE12-0006-01 (sRNA-RRARE); M.B. was the recipient of a scholarship from the ‘SDSV’ (Structure et dynamique des systèmes vivants) doctoral school; R.H.C.T. was the recipient of a scholarship from the Consejo Nacional de Ciencia y Tecnología (CONACyT). Funding for open access charge: Agence Nationale pour la Recherche ANR-19-CE12-0006-01 .; ANR-11-INBS-0013,IFB (ex Renabi-IFB),Institut français de bioinformatique(2011)
    • Publication Information:
      HAL CCSD
      Oxford University Press
    • Publication Date:
      2024
    • Collection:
      Université de Rennes 1: Publications scientifiques (HAL)
    • Abstract:
      International audience ; Pathogenic bacteria employ complex systems to cope with metal ion shortage conditions and propagate in the host. IsrR is a regulatory RNA (sRNA) whose activity is decisive for optimum Staphylococcus aureus fitness upon iron starvation and for full virulence. IsrR down-regulates several genes encoding iron-containing enzymes to spare iron for essential processes. Here, we report that IsrR regulates the tricarboxylic acid (TCA) cycle by controlling aconitase (CitB), an iron-sulfur cluster-containing enzyme, and its transcriptional regulator, CcpE. This IsrR-dependent dual-regulatory mechanism provides an RNA-driven feedforward loop, underscoring the tight control required to prevent aconitase expression. Beyond its canonical enzymatic role, aconitase becomes an RNA-binding protein with regulatory activity in iron-deprived conditions, a feature that is conserved in S. aureus. Aconitase not only negatively regulates its own expression, but also impacts the enzymes involved in both its substrate supply and product utilization. This moonlighting activity concurrently upregulates pyruvate carboxylase expression, allowing it to compensate for the TCA cycle deficiency associated with iron scarcity. These results highlight the cascade of complex posttranscriptional regulations controlling S. aureus central metabolism in response to iron deficiency.
    • Relation:
      info:eu-repo/semantics/altIdentifier/pmid/38869061; BIORXIV: 10.1101/2024.05.23.595409; PUBMED: 38869061
    • Accession Number:
      10.1093/nar/gkae506
    • Online Access:
      https://hal.science/hal-04614896
      https://hal.science/hal-04614896v1/document
      https://hal.science/hal-04614896v1/file/gkae506%20%284%29.pdf
      https://doi.org/10.1093/nar/gkae506
    • Rights:
      http://creativecommons.org/licenses/by-nc/ ; info:eu-repo/semantics/OpenAccess
    • Accession Number:
      edsbas.A838DEC3