TY - JOUR
T1 - Pyroptotic cell corpses are crowned with F-actin-rich filopodia that engage CLEC9A signaling in incoming dendritic cells
AU - Holley, Caroline L.
AU - Monteleone, Mercedes
AU - Fisch, Daniel
AU - Libert, Alexandre E.S.
AU - Ju, Robert J.
AU - Choi, Joon H.
AU - Condon, Nicholas D.
AU - Emming, Stefan
AU - Crawford, Joanna
AU - Lawrence, Grace M.E.P.
AU - Coombs, Jared R.
AU - Lefevre, James G.
AU - Bajracharya, Rinie
AU - Lahoud, Mireille H.
AU - Yap, Alpha S.
AU - Hamilton, Nicholas
AU - Stehbens, Samantha J.
AU - Kagan, Jonathan C.
AU - Ariotti, Nicholas
AU - Burgener, Sabrina S.
AU - Schroder, Kate
N1 - Publisher Copyright:
© The Author(s) 2024.
PY - 2025
Y1 - 2025
N2 - While apoptosis dismantles the cell to enforce immunological silence, pyroptotic cell death provokes inflammation. Little is known of the structural architecture of cells undergoing pyroptosis, and whether pyroptotic corpses are immunogenic. Here we report that inflammasomes trigger the Gasdermin-D- and calcium-dependent eruption of filopodia from the plasma membrane minutes before pyroptotic cell rupture, to crown the resultant corpse with filopodia. As a rich store of F-actin, pyroptotic filopodia are recognized by dendritic cells through the F-actin receptor, CLEC9A (DNGR1). We propose that cells assemble filopodia before cell rupture to serve as a posthumous mark for a cell that has died by gasdermin-induced pyroptosis, or MLKL-induced necroptosis, for recognition by dendritic cells. This study reveals the spectacular morphology of pyroptosis and identifies a mechanism by which inflammasomes induce pyroptotic cells to construct a de novo alarmin that activates dendritic cells via CLEC9A, which coordinates the transition from innate to adaptive immunity1,2.
AB - While apoptosis dismantles the cell to enforce immunological silence, pyroptotic cell death provokes inflammation. Little is known of the structural architecture of cells undergoing pyroptosis, and whether pyroptotic corpses are immunogenic. Here we report that inflammasomes trigger the Gasdermin-D- and calcium-dependent eruption of filopodia from the plasma membrane minutes before pyroptotic cell rupture, to crown the resultant corpse with filopodia. As a rich store of F-actin, pyroptotic filopodia are recognized by dendritic cells through the F-actin receptor, CLEC9A (DNGR1). We propose that cells assemble filopodia before cell rupture to serve as a posthumous mark for a cell that has died by gasdermin-induced pyroptosis, or MLKL-induced necroptosis, for recognition by dendritic cells. This study reveals the spectacular morphology of pyroptosis and identifies a mechanism by which inflammasomes induce pyroptotic cells to construct a de novo alarmin that activates dendritic cells via CLEC9A, which coordinates the transition from innate to adaptive immunity1,2.
UR - https://www.scopus.com/pages/publications/85211433615
U2 - 10.1038/s41590-024-02024-3
DO - 10.1038/s41590-024-02024-3
M3 - Article
C2 - 39633178
AN - SCOPUS:85211433615
SN - 1529-2908
VL - 26
SP - 42
EP - 52
JO - Nature Immunology
JF - Nature Immunology
IS - 1
ER -