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September 27, 2025The Journal of Experimental Medicine6 citationsOpen Access

RIPK1 autophosphorylation at S161 mediates cell death and inflammation

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LKLioba KoernerXLX. LiESEveline Silnov

Key Points

  • S161 autophosphorylation critically regulates RIPK1-mediated cell death and inflammation, and its substitution affects inflammatory responses.
  • Knock-in mouse models demonstrated that S161N substitution suppressed RIPK1's activity and cell death, while preventing skin inflammation.
  • Functional redundancy was observed when combining S161N and S166A mutations to more effectively prevent cell death than individual mutations.
  • Phosphomimetic S161E mutation confirmed its role in overcoming the necroptosis inhibition caused by S166A mutation, emphasizing the importance of phosphorylation.

Abstract

RIPK1 regulates cell death and inflammation and has been implicated in the pathogenesis of inflammatory diseases. RIPK1 autophosphorylation promotes cell death induction; however, the underlying mechanisms and the role of specific autophosphorylation sites remain elusive. Using knock-in mouse models, here we show that S161 autophosphorylation has a critical physiological function in RIPK1-mediated cell death and inflammation. S161N substitution partially suppressed RIPK1-mediated catalytic activity and cell death induction but was sufficient to prevent skin inflammation induced by keratinocyte necroptosis or apoptosis in relevant mouse models. Combined S161N and S166A mutations synergized to prevent RIPK1-mediated cell death more efficiently than the single site mutations, revealing functional redundancy. Moreover, phosphomimetic S161E mutation could overcome the necroptosis-inhibitory effect of S166A mutation, revealing that S161 phosphorylation is sufficient for necroptosis induction. Collectively, a functional interplay of S161 and S166 phosphorylation events regulates RIPK1-dependent cell death and inflammation.

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Cite This Study

Koerner et al. (2025) studied this question.

synapsesocial.com/papers/68d7b3e2eebfec0fc52369ebhttps://doi.org/10.1084/jem.20250279
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