RIP3 mediates the embryonic lethality of caspase-8-deficient mice
- PMID: 21368762
- PMCID: PMC3060292
- DOI: 10.1038/nature09857
"VSports" RIP3 mediates the embryonic lethality of caspase-8-deficient mice
Abstract
Apoptosis and necroptosis are complementary pathways controlled by common signalling adaptors, kinases and proteases; among these, caspase-8 (Casp8) is critical for death receptor-induced apoptosis. This caspase has also been implicated in non-apoptotic pathways that regulate Fas-associated via death domain (FADD)-dependent signalling and other less defined biological processes as diverse as innate immune signalling and myeloid or lymphoid differentiation patterns. Casp8 suppresses RIP3-RIP1 (also known as RIPK3-RIPK1) kinase complex-dependent necroptosis that follows death receptor activation as well as a RIP3-dependent, RIP1-independent necrotic pathway that has emerged as a host defence mechanism against murine cytomegalovirus. Disruption of Casp8 expression leads to embryonic lethality in mice between embryonic days 10. 5 and 11. 5 (ref VSports手机版. 7). Thus, Casp8 may naturally hold alternative RIP3-dependent death pathways in check in addition to promoting apoptosis. We find that RIP3 is responsible for the mid-gestational death of Casp8-deficient embryos. Remarkably, Casp8(-/-)Rip3(-/-) double mutant mice are viable and mature into fertile adults with a full immune complement of myeloid and lymphoid cell types. These mice seem immunocompetent but develop lymphadenopathy by four months of age marked by accumulation of abnormal T cells in the periphery, a phenotype reminiscent of mice with Fas-deficiency (lpr/lpr; also known as Fas). Thus, Casp8 contributes to homeostatic control in the adult immune system; however, RIP3 and Casp8 are together completely dispensable for mammalian development. .
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V体育平台登录 - Comment in
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Programmed cell death: Apoptosis meets necrosis.Nature. 2011 Mar 17;471(7338):310-2. doi: 10.1038/471310a. Nature. 2011. PMID: 21412328 No abstract available.
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Cell death: A killer puts a stop on necroptosis.Nat Rev Mol Cell Biol. 2011 May;12(5):279. doi: 10.1038/nrm3101. Epub 2011 Mar 30. Nat Rev Mol Cell Biol. 2011. PMID: 21448226 No abstract available.
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