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Updated: Jan 2, 2026

Characterization of MLKL-mediated Plasma Membrane Rupture in Necroptosis
Published on: August 7, 2018
Casein kinase-1γ1 and 3 stimulate tumor necrosis factor-induced necroptosis through RIPK3
Song-Yi Lee1, Hyunjoo Kim1, Cathena Meiling Li1
1School of Biological Science, Seoul National University, 1 Gwanak-ro, Gwanak-gu, Seoul, 08826, Korea.
Abstract:
Upon necroptosis activation, receptor interacting serine/threonine kinase (RIPK)1 and RIPK3 form a necrosome complex with pseudokinase mixed lineage kinase-like (MLKL). Although protein phosphorylation is a key event for RIPK1 and RIPK3 activation in response to a necroptosis signal, relatively little is known about other factors that might regulate the activity of these kinases or necrosome formation. Through a gain-of-function screen with 546 kinases and 127 phosphatases, we identified casein kinase 1 gamma (CK1γ) as a candidate necroptosis-promoting factor. Here, we show that the decreased activity or amounts of CK1γ1 and CK1γ3, either by treatment with a chemical inhibitor or knockdown in cells, reduced TNFα-induced necroptosis. Conversely, ectopic expression of CK1γ1 or CK1γ3 exacerbated necroptosis, but not apoptosis. Similar to RIPK1 and RIPK3, CK1γ1 was also cleaved at Asp343 by caspase-8 during apoptosis. CK1γ1 and CK1γ3 formed a protein complex and were recruited to the necrosome harboring RIPK1, RIPK3 and MLKL. In particular, an autophosphorylated form of CK1γ3 at Ser344/345 was detected in the necrosome and was required to mediate the necroptosis. In addition, in vitro assays with purified proteins showed that CK1γ phosphorylated RIPK3, affecting its activity, and in vivo assays showed that the CK1γ-specific inhibitor Gi prevented abrupt death in mice with hypothermia in a model of TNFα-induced systemic inflammatory response syndrome. Collectively, these data suggest that CK1γ1 and CK1γ3 are required for TNFα-induced necroptosis likely by regulating RIPK3.
Insights
Casein kinase 1 gamma (CK1γ) promotes necroptosis, a form of programmed cell death. CK1γ regulates RIPK3 activity within the necrosome complex, impacting inflammatory responses and hypothermia-induced death.
Area of Science:
- Cellular biology
- Molecular mechanisms of cell death
- Signal transduction pathways
Background:
- Necroptosis is a regulated form of necrosis crucial in immunity and disease.
- Receptor interacting serine/threonine kinase (RIPK)1 and RIPK3 form the necrosome complex, central to necroptosis.
- Regulation of necrosome formation and kinase activity beyond RIPK1/RIPK3 remains incompletely understood.
Purpose of the Study:
- To identify novel regulators of necroptosis.
- To investigate the role of casein kinase 1 gamma (CK1γ) in TNFα-induced necroptosis.
Main Methods:
- Gain-of-function screening of kinases and phosphatases.
- Cellular knockdown and overexpression studies.
- Biochemical assays including in vitro phosphorylation and protein complex analysis.
- In vivo studies using a mouse model of hypothermia and systemic inflammatory response syndrome.
Main Results:
- Casein kinase 1 gamma (CK1γ1 and CK1γ3) was identified as a necroptosis-promoting factor.
- CK1γ depletion reduced TNFα-induced necroptosis, while overexpression enhanced it.
- CK1γ proteins complex with and are recruited to the necrosome.
- CK1γ phosphorylates RIPK3, modulating its activity and necroptosis.
- A CK1γ inhibitor prevented death in a mouse model of inflammatory syndrome.
Conclusions:
- CK1γ1 and CK1γ3 are essential positive regulators of TNFα-induced necroptosis.
- CK1γ likely functions by phosphorylating RIPK3 within the necrosome.
- CK1γ inhibition represents a potential therapeutic strategy for inflammatory conditions.
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