Plasma membrane protrusions mediate host cell-cell fusion induced by Burkholderia thailandensis

Nora Kostow1, Matthew D Welch1

  • 1Department of Molecular & Cell Biology, University of California, Berkeley, Berkeley, CA 94720.

Insights

Bacteria use actin motility to induce cell-cell fusion via the type VI secretion system-5 (T6SS-5). Proteins VgrG5 and TagD5 secreted by T6SS-5 are crucial for this bacterial spread mechanism.

Area of Science:

  • Microbiology
  • Cell Biology
  • Bacterial Pathogenesis

Background:

  • Cell-cell fusion is vital for numerous biological processes.
  • Certain bacteria, like *Burkholderia thailandensis*, spread between host cells by inducing fusion.
  • The type VI secretion system-5 (T6SS-5) and its protein VgrG5 are known to be involved in this process.

Purpose of the Study:

  • To elucidate the cellular mechanism by which *B. thailandensis* induces host cell-cell fusion.
  • To identify specific T6SS-5 proteins critical for bacteria-mediated cell fusion.

Main Methods:

  • Live-cell imaging was employed to observe bacterial-host cell interactions.
  • Investigated the role of T6SS-5 components, specifically VgrG5 and TagD5, in fusion events.

Main Results:

  • *B. thailandensis* utilizes actin-based motility to create membrane protrusions that bridge adjacent cells.
  • Cell-cell fusion occurs within these protrusions, mediated by the T6SS-5 effectors VgrG5 and TagD5.
  • Absence of VgrG5 or TagD5 leads to bacterial engulfment rather than fusion.

Conclusions:

  • The T6SS-5 effectors VgrG5 and TagD5 are secreted locally within membrane protrusions.
  • These proteins play a critical role in promoting membrane fusion, facilitating bacterial intercellular spread.

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