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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.
Abstract:
Cell-cell fusion is important for biological processes including fertilization, development, immunity, and microbial pathogenesis. Bacteria in the pseudomallei group of the Burkholderia species, including B. thailandensis, spread between host cells by inducing cell-cell fusion. Previous work showed that B. thailandensis-induced cell-cell fusion requires intracellular bacterial motility and a bacterial protein secretion apparatus called the type VI secretion system-5 (T6SS-5), including the T6SS-5 protein VgrG5. However, the cellular-level mechanism of and T6SS-5 proteins important for bacteria-induced cell-cell fusion remained incompletely described. Using live-cell imaging, we found bacteria used actin-based motility to push on the host cell plasma membrane to form plasma membrane protrusions that extended into neighboring cells. Then, membrane fusion occurred within membrane protrusions either proximal to the bacterium at the tip or elsewhere within protrusions. Expression of VgrG5 by bacteria within membrane protrusions was required to promote cell-cell fusion. Furthermore, a second predicted T6SS-5 protein, TagD5, was also required for cell-cell fusion. In the absence of VgrG5 or TagD5, bacteria in plasma membrane protrusions were engulfed into neighboring cells. Our results suggest that the T6SS-5 effectors VgrG5 and TagD5 are secreted within membrane protrusions and act locally to promote membrane fusion.
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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