Caspase-8 is the molecular switch for apoptosis, necroptosis and pyroptosis.

Fritsch, Melanie; Günther, Saskia D; Schwarzer, Robin; Albert, Marie-Christine; Schorn, Fabian; Werthenbach, J Paul; Schiffmann, Lars M; Stair, Neil et al. · Nature · 2019

basic_science · Level V

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Abstract

Caspase-8 is the initiator caspase of extrinsic apoptosis<sup>1,2</sup> and inhibits necroptosis mediated by RIPK3 and MLKL. Accordingly, caspase-8 deficiency in mice causes embryonic lethality<sup>3</sup>, which can be rescued by deletion of either Ripk3 or Mlkl<sup>4-6</sup>. Here we show that the expression of enzymatically inactive CASP8(C362S) causes embryonic lethality in mice by inducing necroptosis and pyroptosis. Similar to Casp8<sup>-/-</sup> mice<sup>3,7</sup>, Casp8<sup>C362S/C362S</sup> mouse embryos died after endothelial cell necroptosis leading to cardiovascular defects. MLKL deficiency rescued the cardiovascular phenotype but unexpectedly caused perinatal lethality in Casp8<sup>C362S/C362S</sup> mice, indicating that CASP8(C362S) causes necroptosis-independent death at later stages of embryonic development. Specific loss of the catalytic activity of caspase-8 in intestinal epithelial cells induced intestinal inflammation similar to intestinal epithelial cell-specific Casp8 knockout mice<sup>8</sup>. Inhibition of necroptosis by additional deletion of Mlkl severely aggravated intestinal inflammation and caused premature lethality in Mlkl knockout mice with specific loss of caspase-8 catalytic activity in intestinal epithelial cells. Expression of CASP8(C362S) triggered the formation of ASC specks, activation of caspase-1 and secretion of IL-1β. Both embryonic lethality and premature death were completely rescued in Casp8<sup>C362S/C362S</sup>Mlkl<sup>-/-</sup>Asc<sup>-/-</sup> or Casp8<sup>C362S/C362S</sup>Mlkl<sup>-/-</sup>Casp1<sup>-/-</sup> mice, indicating that the activation of the inflammasome promotes CASP8(C362S)-mediated tissue pathology when necroptosis is blocked. Therefore, caspase-8 represents the molecular switch that controls apoptosis, necroptosis and pyroptosis, and prevents tissue damage during embryonic development and adulthood.

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