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Updated: May 30, 2026

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Published on: April 11, 2025
RIP1-dependent and independent effects of necrostatin-1 in necrosis and T cell activation
YoungSik Cho1, Thomas McQuade, Haibing Zhang
1Department of Pathology, Program in Immunology and Virology, The University of Massachusetts Medical School, Worcester, Massachusetts, United States of America.
Background:
Programmed necrosis/necroptosis is an emerging form of cell death that plays important roles in mammalian development and the immune system. The pro-necrotic kinases in the receptor interacting protein (RIP) family are crucial mediators of programmed necrosis. Recent advances in necrosis research have been greatly aided by the identification of chemical inhibitors that block programmed necrosis. Necrostatin-1 (Nec-1) and its derivatives were previously shown to target the pro-necrotic kinase RIP1/RIPK1. The protective effect conferred by Nec-1 and its derivatives in many experimental model systems was often attributed to the inhibition of RIP1 function.
Methodology/Principal Findings:
We compared the effect of Nec-1 and siRNA-mediated silencing of RIP1 in the murine fibrosarcoma cell line L929. Treatment of L929 cells with the pan-caspase inhibitor zVAD-fmk or exogenous TNF induces necrosis. Strikingly, we found that siRNA-mediated silencing of RIP1 inhibited zVAD-fmk induced necrosis, but not TNF-induced necrosis. TNF-induced cell death in RIP1 knocked down L929 cells was inhibited by Nec-1, but not the caspase inhibitor zVAD-fmk. We found that PKA-C§ expression, but not Jnk or Erk activation, was moderately inhibited by Nec-1. Moreover, we found that Nec-1 inhibits proximal T cell receptor signaling independent of RIP1, leading to inhibition of T cell proliferation.
Conclusions/Significance:
Our results reveal that besides RIP1, Nec-1 also targets other factors crucial for necrosis induction in L929 cells. In addition, high doses of Nec-1 inhibit other signal transduction pathways such as that for T cell receptor activation. These results highlight the importance to independently validate results obtained using Nec-1 with other approaches such as siRNA-mediated gene silencing. We propose that some of the previous published results obtained using Nec-1 should be re-evaluated in light of our findings.
Insights
Necrostatin-1 (Nec-1) inhibits programmed necrosis by targeting factors beyond RIP1, including T cell receptor signaling. Independent validation of Nec-1 results using methods like siRNA is crucial for accurate research in cell death studies.
Area of Science:
- Cell Biology
- Immunology
- Molecular Biology
Background:
- Programmed necrosis (necroptosis) is a vital cell death pathway in mammals, regulated by receptor-interacting protein (RIP) kinases.
- Chemical inhibitors like Necrostatin-1 (Nec-1) have been instrumental in studying necroptosis, often assumed to act solely by inhibiting RIP1.
- Previous research attributed Nec-1's protective effects primarily to RIP1 inhibition.
Purpose of the Study:
- To investigate the precise mechanisms of Nec-1 in programmed necrosis.
- To compare the effects of Nec-1 and RIP1 gene silencing on necrosis induction.
- To identify additional targets of Nec-1 beyond RIP1.
Main Methods:
- Utilized siRNA-mediated silencing of RIP1 in L929 murine fibrosarcoma cells.
- Compared the effects of Nec-1 and the pan-caspase inhibitor zVAD-fmk on TNF- or zVAD-fmk-induced necrosis.
- Assessed the impact of Nec-1 on PKA-C§, Jnk, Erk activation, and T cell receptor signaling.
Main Results:
- RIP1 silencing inhibited zVAD-fmk-induced necrosis but not TNF-induced necrosis.
- Nec-1 inhibited TNF-induced cell death in RIP1-silenced cells, independent of caspase inhibition.
- Nec-1 demonstrated inhibitory effects on PKA-C§ expression and proximal T cell receptor signaling, independent of RIP1.
Conclusions:
- Nec-1 targets multiple factors involved in necrosis induction in L929 cells, not solely RIP1.
- High concentrations of Nec-1 can inhibit other signaling pathways, including T cell receptor activation.
- Results underscore the necessity of validating Nec-1 findings with alternative methods like gene silencing to ensure accuracy and re-evaluate prior studies.
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