Listeria monocytogenes exploits host exocytosis to promote cell-to-cell spread

Georgina C Dowd1, Roman Mortuza1, Manmeet Bhalla1

  • 1Department of Microbiology and Immunology, University of Otago, 9054 Dunedin, New Zealand.

Insights

Listeria monocytogenes exploits host exocytosis for cell-to-cell spread. This pathogen hijacks the exocyst complex, Rab8, and Rab11 to form protrusions and spread between human cells.

Area of Science:

  • Microbiology
  • Cell Biology
  • Infectious Diseases

Background:

  • Listeria monocytogenes is a facultative intracellular pathogen that spreads within human tissues using actin-based motility.
  • Bacteria propel through the cytoplasm and remodel host plasma membranes into protrusions for cell-to-cell spread.

Purpose of the Study:

  • To investigate if Listeria protrusion formation involves host processes beyond actin polymerization.
  • To determine the role of host exocytosis in Listeria-mediated cell-to-cell spread.

Main Methods:

  • Confocal microscopy to visualize bacterial protrusions and host cell interactions.
  • RNA interference to deplete exocyst complex components.
  • Genetic studies to assess the roles of Rab8 and Rab11.
  • Analysis of the Listeria virulence factor InlC interaction with the exocyst complex.

Main Results:

  • Exocytosis is up-regulated in Listeria protrusions, dependent on the host exocyst complex.
  • Depletion of exocyst components inhibited protrusion formation and bacterial spread.
  • Exocyst regulators Rab8 and Rab11 are crucial for bacterial protrusion and spread.
  • The Listeria virulence factor InlC mediates recruitment of Exo70 to bacterial protrusions, promoting elongation.

Conclusions:

  • Listeria monocytogenes subverts host exocytosis, specifically utilizing the exocyst complex, to facilitate its intercellular spread.
  • The pathogen's ability to spread is enhanced by manipulating host exocytosis machinery, including Rab8 and Rab11.

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