Cleavage-independent activation of ancient eukaryotic gasdermins and structural mechanisms

Gasdermins (GSDMs) are pore-forming proteins that execute pyroptosis for immune defense. GSDMs are two-domain proteins activated by proteolytic removal of the inhibitory domain. In this work, we report two types of cleavage-independent GSDM activation. First, GSDM, a pore-forming domain-only protein...

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Veröffentlicht in:Science (American Association for the Advancement of Science) 2024-05, Vol.384 (6697), p.adm9190-adm9190
Hauptverfasser: Li, Yueyue, Hou, Yanjie, Sun, Qi, Zeng, Huan, Meng, Fanyi, Tian, Xiang, He, Qun, Shao, Feng, Ding, Jingjin
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Sprache:eng
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Zusammenfassung:Gasdermins (GSDMs) are pore-forming proteins that execute pyroptosis for immune defense. GSDMs are two-domain proteins activated by proteolytic removal of the inhibitory domain. In this work, we report two types of cleavage-independent GSDM activation. First, GSDM, a pore-forming domain-only protein from the basal metazoan , is a disulfides-linked autoinhibited dimer activated by reduction of the disulfides. The cryo-electron microscopy (cryo-EM) structure illustrates the assembly mechanism for the 44-mer GSDM pore. Second, RCD-1-1 and RCD-1-2, encoded by the polymorphic ( ) gene in filamentous fungus , are also pore-forming domain-only GSDMs. RCD-1-1 and RCD-1-2, when encountering each other, form pores and cause pyroptosis, underlying allorecognition in . The cryo-EM structure reveals a pore of 11 RCD-1-1/RCD-1-2 heterodimers and a heterodimerization-triggered pore assembly mechanism. This study shows mechanistic diversities in GSDM activation and indicates versatile functions of GSDMs.
ISSN:0036-8075
1095-9203
DOI:10.1126/science.adm9190