MLKL activation triggers NLRP3-mediated processing and release of IL-1β independently of gasdermin-D

KD Gutierrez, MA Davis, BP Daniels… - The Journal of …, 2017 - journals.aai.org
KD Gutierrez, MA Davis, BP Daniels, TM Olsen, P Ralli-Jain, SWG Tait, M Gale, A Oberst
The Journal of Immunology, 2017journals.aai.org
Necroptosis is a form of programmed cell death defined by activation of the kinase receptor
interacting protein kinase 3 and its downstream effector, the pseudokinase mixed lineage
kinase domain-like (MLKL). Activated MLKL translocates to the cell membrane and disrupts
it, leading to loss of cellular ion homeostasis. In this study, we use a system in which this
event can be specifically triggered by a small-molecule ligand to show that MLKL activation
is sufficient to induce the processing and release of bioactive IL-1β. MLKL activation triggers …
Abstract
Necroptosis is a form of programmed cell death defined by activation of the kinase receptor interacting protein kinase 3 and its downstream effector, the pseudokinase mixed lineage kinase domain-like (MLKL). Activated MLKL translocates to the cell membrane and disrupts it, leading to loss of cellular ion homeostasis. In this study, we use a system in which this event can be specifically triggered by a small-molecule ligand to show that MLKL activation is sufficient to induce the processing and release of bioactive IL-1β. MLKL activation triggers potassium efflux and assembly of the NLRP3 inflammasome, which is required for the processing and activity of IL-1β released during necroptosis. Notably, MLKL activation also causes cell membrane disruption, which allows efficient release of IL-1β independently of the recently described pyroptotic effector gasdermin-D. Taken together, our findings indicate that MLKL is an endogenous activator of the NLRP3 inflammasome, and that MLKL activation provides a mechanism for concurrent processing and release of IL-1β independently of gasdermin-D.
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