4.5 Review

Pathogen espionage: multiple bacterial adrenergic sensors eavesdrop on host communication systems

Journal

MOLECULAR MICROBIOLOGY
Volume 87, Issue 3, Pages 455-465

Publisher

WILEY
DOI: 10.1111/mmi.12110

Keywords

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Funding

  1. Medical Research Council, UK
  2. Medical Research Council [G0801212, G0501449] Funding Source: researchfish
  3. MRC [G0501449, G0801212] Funding Source: UKRI

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The interactions between bacterial pathogens and their eukaryotic hosts are vital in determining the outcome of infections. Bacterial pathogens employ molecular sensors to detect and facilitate adaptation to changes in their niche. The sensing of these extracellular signals enables the pathogen to navigate within mammalian hosts. Intercellular bacterial communication is facilitated by the production and sensing of autoinducer (AI) molecules via quorum sensing. More recently, AI-3 and the host neuroendocrine (NE) hormones adrenaline and noradrenaline were reported to display cross-talk for the activation of the same signalling pathways. Remarkably, there is increasing evidence to suggest that enteric bacteria sense and respond to the host NE stress hormones adrenaline and noradrenaline to modulate virulence. These responses can be inhibited by alpha and beta-adrenergic receptor antagonists implying a bacterial receptor-based sensing and signalling cascade. In Escherichia coli O157:H7 and Salmonella, QseC has been proposed as the adrenergic receptor. Strikingly, there is an increasing body of evidence that not all the bacterial adrenergic responses require signalling through QseC. Here we provide additional hypotheses to reconcile these observations implicating the existence of alternative adrenergic receptors including BasS, QseE and CpxA and their associated signalling cascades with major roles in interkingdom communication.

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