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1.
JCI Insight ; 5(12)2020 06 18.
Artículo en Inglés | MEDLINE | ID: mdl-32554929

RESUMEN

Interferon regulatory factor 1 (IRF1) regulates diverse biological functions, including modulation of cellular responses involved in tumorigenesis. Genetic mutations and altered IRF1 function are associated with several cancers. Although the function of IRF1 in the immunobiology of cancer is emerging, IRF1-specific mechanisms regulating tumorigenesis and tissue homeostasis in vivo are not clear. Here, we found that mice lacking IRF1 were hypersusceptible to colorectal tumorigenesis. IRF1 functions in both the myeloid and epithelial compartments to confer protection against AOM/DSS-induced colorectal tumorigenesis. We further found that IRF1 also prevents tumorigenesis in a spontaneous mouse model of colorectal cancer. The attenuated cell death in the colons of Irf1-/- mice was due to defective pyroptosis, apoptosis, and necroptosis (PANoptosis). IRF1 does not regulate inflammation and the inflammasome in the colon. Overall, our study identified IRF1 as an upstream regulator of PANoptosis to induce cell death during colitis-associated tumorigenesis.


Asunto(s)
Neoplasias del Colon/genética , Neoplasias Colorrectales/genética , Neoplasias Colorrectales/prevención & control , Factor 1 Regulador del Interferón/genética , Animales , Transformación Celular Neoplásica/genética , Neoplasias del Colon/metabolismo , Neoplasias Colorrectales/metabolismo , Inflamasomas/metabolismo , Factor 1 Regulador del Interferón/metabolismo , Ratones , Necroptosis/genética
2.
J Exp Med ; 217(3)2020 03 02.
Artículo en Inglés | MEDLINE | ID: mdl-31869420

RESUMEN

RIPK1 kinase activity has been shown to be essential to driving pyroptosis, apoptosis, and necroptosis. However, here we show a kinase activity-independent role for RIPK1 in these processes using a model of TLR priming in a TAK1-deficient setting to mimic pathogen-induced priming and inhibition. TLR priming of TAK1-deficient macrophages triggered inflammasome activation, including the activation of caspase-8 and gasdermin D, and the recruitment of NLRP3 and ASC into a novel RIPK1 kinase activity-independent cell death complex to drive pyroptosis and apoptosis. Furthermore, we found fully functional RIPK1 kinase activity-independent necroptosis driven by the RIPK3-MLKL pathway in TAK1-deficient macrophages. In vivo, TAK1 inactivation resulted in RIPK3-caspase-8 signaling axis-driven myeloid proliferation and a severe sepsis-like syndrome. Overall, our study highlights a previously unknown mechanism for RIPK1 kinase activity-independent inflammasome activation and pyroptosis, apoptosis, and necroptosis (PANoptosis) that could be targeted for treatment of TAK1-associated myeloid proliferation and sepsis.


Asunto(s)
Apoptosis/inmunología , Inmunidad Innata/inmunología , Inflamación/inmunología , Quinasas Quinasa Quinasa PAM/inmunología , Necroptosis/inmunología , Piroptosis/inmunología , Proteína Serina-Treonina Quinasas de Interacción con Receptores/inmunología , Animales , Caspasa 8/inmunología , Femenino , Inflamasomas/inmunología , Macrófagos/inmunología , Ratones , Ratones Noqueados , Transducción de Señal/inmunología
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