Activity of caspase-8 determines plasticity between cell death pathways.

Newton, Kim; Wickliffe, Katherine E; Maltzman, Allie; Dugger, Debra L; Reja, Rohit; Zhang, Yue; Roose-Girma, Merone; Modrusan, Zora et al. · Nature · 2019

basic_science · Level V

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Abstract

Caspase-8 is a protease with both pro-death and pro-survival functions: it mediates apoptosis induced by death receptors such as TNFR1<sup>1</sup>, and suppresses necroptosis mediated by the kinase RIPK3 and the pseudokinase MLKL<sup>2-4</sup>. Mice that lack caspase-8 display MLKL-dependent embryonic lethality<sup>4</sup>, as do mice that express catalytically inactive CASP8(C362A)<sup>5</sup>. Casp8<sup>C362A/C362A</sup>Mlkl<sup>-/-</sup> mice die during the perinatal period<sup>5</sup>, whereas Casp8<sup>-/-</sup>Mlkl<sup>-/-</sup> mice are viable<sup>4</sup>, which indicates that inactive caspase-8 also has a pro-death scaffolding function. Here we show that mutant CASP8(C362A) induces the formation of ASC (also known as PYCARD) specks, and caspase-1-dependent cleavage of GSDMD and caspases 3 and 7 in MLKL-deficient mouse intestines around embryonic day 18. Caspase-1 and its adaptor ASC contributed to the perinatal lethal phenotype because a number of Casp8<sup>C362A/C362A</sup>Mlkl<sup>-/-</sup>Casp1<sup>-/-</sup> and Casp8<sup>C362A/C362A</sup>Mlkl<sup>-/-</sup>Asc<sup>-/-</sup> mice survived beyond weaning. Transfection studies suggest that inactive caspase-8 adopts a distinct conformation to active caspase-8, enabling its prodomain to engage ASC. Upregulation of the lipopolysaccharide sensor caspase-11 in the intestines of both Casp8<sup>C362A/C362A</sup>Mlkl<sup>-/-</sup> and Casp8<sup>C362A/C362A</sup>Mlkl<sup>-/-</sup>Casp1<sup>-/-</sup> mice also contributed to lethality because Casp8<sup>C362A/C362A</sup>Mlkl<sup>-/-</sup>Casp1<sup>-/-</sup>Casp11<sup>-/-</sup> (Casp11 is also known as Casp4) neonates survived more often than Casp8<sup>C362A/C362A</sup>Mlkl<sup>-/-</sup>Casp1<sup>-/-</sup> neonates. Finally, Casp8<sup>C362A/C362A</sup>Ripk3<sup>-/-</sup>Casp1<sup>-/-</sup>Casp11<sup>-/-</sup> mice survived longer than Casp8<sup>C362A/C362A</sup>Mlkl<sup>-/-</sup>Casp1<sup>-/-</sup>Casp11<sup>-/-</sup> mice, indicating that a necroptosis-independent function of RIPK3 also contributes to lethality. Thus, unanticipated plasticity in death pathways is revealed when caspase-8-dependent apoptosis and MLKL-dependent necroptosis are inhibited.

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