PPP1R3G Deletion Blocks RIPK1-Mediated Apoptosis and Necroptosis in Doxorubicin-Induced Cardiotoxicity
Ma, X.; Chen, K.; Wang, Z.
Show abstract
Cardiotoxicity is a major limitation of cancer chemotherapy, exemplified by doxorubicin (DOX), yet its underlying mechanisms remain incompletely defined. Here, we identify Protein Phosphatase 1 Regulatory Subunit 3G (PPP1R3G) as a critical amplifier of DOX-induced cardiotoxicity. We show that DOX activates both apoptosis and necroptosis in vitro. Mechanistically, DOX first induces p38-dependent inhibitory phosphorylation of receptor-interacting protein kinase 1 (RIPK1), providing a transient brake on cell death. PPP1R3G facilitates the removal of inhibitory phosphorylation, thereby permitting RIPK1 activation, oligomerization, and downstream apoptotic signaling. Activated RIPK1 further promotes mitochondrial DNA (mtDNA) release, which induces IFN-{beta}-mediated ZBP1 expression and establishes a positive feedback loop that amplifies late-stage necroptosis. Genetic ablation of Ppp1r3g suppresses both apoptosis and necroptosis in cardiomyocytes, attenuates inflammatory cytokine production, and protects mice from DOX-induced cardiac injury and mortality. These findings delineate a PPP1R3G-RIPK1 axis that converts an early protective phosphorylation checkpoint into sustained death signaling and identify PPP1R3G as a potential therapeutic target for cardioprotection.
Matching journals
The top 5 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- A microRNA program controls the transition of cardiomyocyte hyperplasia to hypertrophy and stimulates mammalian cardiac regeneration 95%
- Mitochondrial CaMKII causes metabolic reprogramming, energetic insufficiency, and dilated cardiomyopathy 95%
- Ezh2 as an epigenetic checkpoint regulator during monocyte differentiation: a potential target to improve cardiac repair after myocardial infarction 95%
Similar papers in this journal
- Atf3 controls transitioning in female mitochondrial cardiomyopathy as identified by single-cell transcriptomics 95%
- Optogenetic quantification of source sink relationship in intact hearts to explain cardiac arrhythmia initiation and protection 93%
- Mediobasal hypothalamic FKBP51 acts as a molecular switch linking autophagy to whole-body metabolism 92%
Similar papers in this journal
- Splenic CD169 + Tim4 + Marginal Metallophilic Macrophages Are Essential for Wound Healing After Myocardial Infarction 94%
- CD206 + IL-4Rα + MACROPHAGES ARE DRIVERS OF ADVERSE CARDIAC REMODELING IN ISCHEMIC CARDIOMYOPATHY 94%
- Exploring Integrin α5β1 as a Potential Therapeutic Target for Pulmonary Arterial Hypertension: Insights from Comprehensive Multicenter Preclinical Studies 94%