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Caspase-11 cleaves gasdermin D for non-canonical inflammasome signalling

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Kayagaki, Nobuhiko
Stowe, Irma
Lee, Bettina
O'Rourke, Karen
Anderson, Keith
Warming, Søren
Cuellar, Trinna
Haley, Benjamin
Roose-Girma, Merone
Phung, Qui

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Macmillan Publishers Ltd

Abstract

Intracellular lipopolysaccharide from Gram-negative bacteria including Escherichia coli, Salmonella typhimurium, Shigella flexneri, and Burkholderia thailandensis activates mouse caspase-11, causing pyroptotic cell death, interleukin-1b processing, and lethal septic shock. How caspase-11 executes these downstream signalling events is largely unknown. Here we show that gasdermin D is essential for caspase-11-dependent pyroptosis and interleukin-1b maturation. A forward genetic screen with ethyl-N-nitrosourea-mutagenized mice links Gsdmd to the intracellular lipopolysaccharide response. Macrophages fromGsdmd2/2mice generated by gene targeting also exhibit defective pyroptosis and interleukin-1b secretion induced by cytoplasmic lipopolysaccharide or Gram-negative bacteria. In addition, Gsdmd2/2 mice are protected from a lethal dose of lipopolysaccharide. Mechanistically, caspase-11 cleaves gasdermin D, and the resulting amino-terminal fragment promotes both pyroptosis and NLRP3-dependent activation of caspase-1 in a cell-intrinsic manner. Our data identify gasdermin D as a critical target of caspase-11 and a keymediator of the host response against Gram-negative bacteria.

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Nature

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Restricted until

2037-12-31
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