[PDF][PDF] Caspase-1 engagement and TLR-induced c-FLIP expression suppress ASC/caspase-8-dependent apoptosis by inflammasome sensors NLRP1b and NLRC4

N Van Opdenbosch, H Van Gorp, M Verdonckt… - Cell reports, 2017 - cell.com
N Van Opdenbosch, H Van Gorp, M Verdonckt, PHV Saavedra, NM de Vasconcelos
Cell reports, 2017cell.com
The caspase activation and recruitment domain (CARD)-based inflammasome sensors
NLRP1b and NLRC4 induce caspase-1-dependent pyroptosis independent of the
inflammasome adaptor ASC. Here, we show that NLRP1b and NLRC4 trigger caspase-8-
mediated apoptosis as an alternative cell death program in caspase-1−/− macrophages and
intestinal epithelial organoids (IECs). The caspase-8 adaptor FADD was recruited to ASC
specks, which served as cytosolic platforms for caspase-8 activation and NLRP1b/NLRC4 …
Summary
The caspase activation and recruitment domain (CARD)-based inflammasome sensors NLRP1b and NLRC4 induce caspase-1-dependent pyroptosis independent of the inflammasome adaptor ASC. Here, we show that NLRP1b and NLRC4 trigger caspase-8-mediated apoptosis as an alternative cell death program in caspase-1−/− macrophages and intestinal epithelial organoids (IECs). The caspase-8 adaptor FADD was recruited to ASC specks, which served as cytosolic platforms for caspase-8 activation and NLRP1b/NLRC4-induced apoptosis. We further found that caspase-1 protease activity dominated over scaffolding functions in suppressing caspase-8 activation and induction of apoptosis of macrophages and IECs. Moreover, TLR-induced c-FLIP expression inhibited caspase-8-mediated apoptosis downstream of ASC speck assembly, but did not affect pyroptosis induction by NLRP1b and NLRC4. Moreover, unlike during pyroptosis, NLRP1b- and NLRC4-elicited apoptosis retained alarmins and the inflammasome-matured cytokines interleukin 1β (IL-1β) and IL-18 intracellularly. This work identifies critical mechanisms regulating apoptosis induction by the inflammasome sensors NLRP1b and NLRC4 and suggests converting pyroptosis into apoptosis as a paradigm for suppressing inflammation.
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