4.6 Review

Interplay between Regulatory RNAs and Signal Transduction Systems during Bacterial Infection

Journal

GENES
Volume 11, Issue 10, Pages -

Publisher

MDPI
DOI: 10.3390/genes11101209

Keywords

small regulatory RNAs; TCS-associated RNAs; stress response; two-component systems; alternative sigma factors; genome-wide approaches; mixed regulatory networks; host adaptation; bacterial pathogens; quorum sensing; community behavior

Funding

  1. Agence Nationale de la Recherche (CloSTARn) [ANR-13-JSV3-0005-01]
  2. Institut Universitaire de France
  3. University Paris-Saclay
  4. Institute for Integrative Biology of the Cell
  5. DIM-1HEALTH regional Ile de France program (LSP) [164466]
  6. Centre National de la Recherche Scientifique (CNRS-RFBR PRC 2019) [288426]

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The ability of pathogenic bacteria to stably infect the host depends on their capacity to respond and adapt to the host environment and on the efficiency of their defensive mechanisms. Bacterial envelope provides a physical barrier protecting against environmental threats. It also constitutes an important sensory interface where numerous sensing systems are located. Signal transduction systems include Two-Component Systems (TCSs) and alternative sigma factors. These systems are able to sense and respond to the ever-changing environment inside the host, altering the bacterial transcriptome to mitigate the impact of the stress. The regulatory networks associated with signal transduction systems comprise small regulatory RNAs (sRNAs) that can be directly involved in the expression of virulence factors. The aim of this review is to describe the importance of TCS- and alternative sigma factor-associated sRNAs in human pathogens during infection. The currently available genome-wide approaches for studies of TCS-regulated sRNAs will be discussed. The differences in the signal transduction mediated by TCSs between bacteria and higher eukaryotes and the specificity of regulatory RNAs for their targets make them appealing targets for discovery of new strategies to fight against multi-resistant bacteria.

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