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RIP1-HAT1-SIRT Complex Identification and Targeting in Treatment and Prevention of Cancer
Vincenzo Carafa1, Angela Nebbioso1, Francesca Cuomo1
1Dipartimento di Medicina di Precisione, Università degli Studi della Campania "Luigi Vanvitelli", Napoli, Italy.
Abstract:
Purpose: Alteration in cell death is a hallmark of cancer. A functional role regulating survival, apoptosis, and necroptosis has been attributed to RIP1/3 complexes.Experimental Design: We have investigated the role of RIP1 and the effects of MC2494 in cell death induction, using different methods as flow cytometry, transcriptome analysis, immunoprecipitation, enzymatic assays, transfections, mutagenesis, and in vivo studies with different mice models.Results: Here, we show that RIP1 is highly expressed in cancer, and we define a novel RIP1/3-SIRT1/2-HAT1/4 complex. Mass spectrometry identified five acetylations in the kinase and death domain of RIP1. The novel characterized pan-SIRT inhibitor, MC2494, increases RIP1 acetylation at two additional sites in the death domain. Mutagenesis of the acetylated lysine decreases RIP1-dependent cell death, suggesting a role for acetylation of the RIP1 complex in cell death modulation. Accordingly, MC2494 displays tumor-selective potential in vitro, in leukemic blasts ex vivo, and in vivo in both xenograft and allograft cancer models. Mechanistically, MC2494 induces bona fide tumor-restricted acetylated RIP1/caspase-8-mediated apoptosis. Excitingly, MC2494 displays tumor-preventive activity by blocking 7,12-dimethylbenz(α)anthracene-induced mammary gland hyperproliferation in vivoConclusions: These preventive features might prove useful in patients who may benefit from a recurrence-preventive approach with low toxicity during follow-up phases and in cases of established cancer predisposition. Thus, targeting the newly identified RIP1 complex may represent an attractive novel paradigm in cancer treatment and prevention. Clin Cancer Res; 24(12); 2886-900. ©2018 AACR.
Insights
This study identifies a new RIP1/3-SIRT1/2-HAT1/4 complex involved in cancer cell death. The inhibitor MC2494 targets this complex, selectively inducing apoptosis in tumors and showing preventive potential.
Area of Science:
- Cancer Biology
- Molecular Oncology
- Cell Death Pathways
Background:
- Alterations in cell death mechanisms are fundamental to cancer development.
- RIP1/3 complexes are known regulators of cell survival, apoptosis, and necroptosis.
Purpose of the Study:
- To investigate the role of RIP1 in cancer and the effects of the novel inhibitor MC2494 on cell death induction.
- To characterize a novel RIP1-associated complex and its role in cancer modulation.
Main Methods:
- Utilized flow cytometry, transcriptome analysis, immunoprecipitation, enzymatic assays, transfections, mutagenesis, and in vivo mouse models.
- Investigated RIP1 acetylation and its impact on cell death using mass spectrometry and mutagenesis.
- Assessed the efficacy of MC2494 in vitro, ex vivo, and in vivo cancer models.
Main Results:
- Identified a novel RIP1/3-SIRT1/2-HAT1/4 complex highly expressed in cancer.
- MC2494, a pan-SIRT inhibitor, increases RIP1 acetylation, leading to decreased RIP1-dependent cell death.
- MC2494 demonstrated tumor-selective apoptosis induction via acetylated RIP1/caspase-8 and exhibited tumor-preventive activity.
Conclusions:
- Acetylation of the RIP1 complex plays a crucial role in modulating cell death.
- MC2494 shows promise as a tumor-selective therapeutic agent and a preventive strategy with low toxicity.
- Targeting the newly identified RIP1 complex offers a novel paradigm for cancer treatment and prevention.
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