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Publication : The palmitoylation of gasdermin D directs its membrane translocation and pore formation during pyroptosis.

First Author  Balasubramanian A Year  2024
Journal  Sci Immunol Volume  9
Issue  94 Pages  eadn1452
PubMed ID  38530158 Mgi Jnum  J:352419
Mgi Id  MGI:7660999 Doi  10.1126/sciimmunol.adn1452
Citation  Balasubramanian A, et al. (2024) The palmitoylation of gasdermin D directs its membrane translocation and pore formation during pyroptosis. Sci Immunol 9(94):eadn1452
abstractText  Plasma membrane perforation elicited by caspase cleavage of the gasdermin D (GSDMD) N-terminal domain (GSDMD-NT) triggers pyroptosis. The mechanisms underlying GSDMD membrane translocation and pore formation are not fully understood. Here, using a proteomic approach, we identified fatty acid synthase (FASN) as a GSDMD-binding partner. S-palmitoylation of GSDMD at Cys(191)/Cys(192) (human/mouse), catalyzed by palmitoyl acyltransferases ZDHHC5 and ZDHHC9 and facilitated by reactive oxygen species (ROS), directly mediated membrane translocation of GSDMD-NT but not full-length GSDMD (GSDMD-FL). Palmitoylation of GSDMD-FL could be induced before inflammasome activation by stimuli such as lipopolysaccharide (LPS), consequently serving as an essential molecular event in macrophage priming. Inhibition of GSDMD palmitoylation suppressed macrophage pyroptosis and IL-1beta release, mitigated organ damage, and enhanced the survival of septic mice. Thus, GSDMD-NT palmitoylation is a key regulatory mechanism controlling GSDMD membrane localization and activation, which may offer an additional target for modulating immune activity in infectious and inflammatory diseases.
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