Philippe Dehio

@pdehio.bsky.social

Postdoc at Institute of Science and Technology Austria in the Sixt Lab. I study the fundamentals of immune cell migration.

🥳 Very happy to see this collaborative work now published in @emboreports.org ! From T cells to Dictyostelium, it reveals a conserved pathway controlling amoeboid migration speed. Many thanks to @pdehio.bsky.social , Christoph and colleagues for involving our lab! doi.org/10.1038/s443...

A conserved VPS34-PIKfyve-TRPML1-myosin II axis regulates the speed of amoeboid cell migration - EMBO Reports

Amoeboid cell migration is key to efficient T cell immunity. Spatial polarization of organelles within cells, including endo-lysosomes, is a prerequisite of migration. However, how ultrastructural polarization is linked to the signaling requirements governing T cell migration remains unknown. Here we show that signaling molecules generated by endo-lysosome-localized kinases regulate velocity of amoeboid migration. Specifically, imaging of T cells identifies accumulation of endo-lysosomes decorated with the lipid kinases VPS34–PIKfyve at the uropod of polarized cells. Activity of VPS34 and PIKfyve regulates speed, but not directedness, of migrating T cells. Mechanistically, PI(3,5)P2 generated by the sequential action of VPS34 and PIKfyve, mediates Ca2+ efflux from lysosomes via the mucolipin TRP cation channel 1 (TRPML1), thus controlling activity of myosin IIA and hence the generation of propulsive force through retrograde actin flow. The VPS34–PIKfyve kinases also regulate velocity of myeloid cells, as well as of the amoeba Dictyostelium discoideum – establishing the axis as an evolutionarily conserved speed control system of amoeboid cell migration.

doi.org

Legendary myosin researcher Jim Sellers retires after many years of making significant contributions to the field and being an unfailingly generous to colleagues - alway sharing materials, insights and wisdom. A symposium honoring Jim will be held in Sept. www.nhlbi.nih.gov/events/2026/...

Scientific Symposium Honoring Dr. James R. Sellers

Retirement symposium honoring Dr. James R. Sellers’ contributions to myosin studies. Leading scientists in the field will be present.

nhlbi.nih.gov