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Characterization of MLKL-mediated Plasma Membrane Rupture in Necroptosis
Published on: August 7, 2018
Necrostatin-1 Protects Against Paraquat-Induced Cardiac Contractile Dysfunction via RIP1-RIP3-MLKL-Dependent
Liping Zhang1, Qiming Feng2, Teng Wang3
1Department of Emergency Medicine, Shanghai Jiao Tong University Affiliated Sixth People's Hospital, Shanghai, 200233, China. gszlp_29@126.com.
Abstract:
Paraquat is a highly toxic prooxidant that triggers oxidative stress and multi-organ failure including that of the heart. To date, effective treatment of paraquat toxicity is still not established. Necroptosis, a newly discovered form of programmed cell death, was recently shown to be strongly associated with cardiovascular disease. Receptor interaction proteins 1 (RIP1), receptor interaction proteins 3 (RIP3), and mixed lineage kinase domain like (MLKL) are key proteins in the necroptosis pathway. Necrostatin-1 (Nec-1) is a specific inhibitor of necroptosis which acts by blocking the interaction between RIP1 and RIP3. In the present study, we studied the effect of Nec-1 on paraquat-induced cardiac contractile dysfunction and reactive oxygen species (ROS) production in the heart tissues using a mouse model. Our results revealed impaired contractile function, deranged intracellular Ca2+ handling and echocardiographic abnormalities in mice challenged with paraquat. We further found enhanced expressions of RIP1, RIP3, and MLKL along with overproduction of ROS in mice heart tissues. Nec-1 pre-treatment prevented cardiac contractile dysfunction in paraquat-challenged mice. Furthermore, Nec-1 reduced RIP1-RIP3 interaction, down-regulated the RIP1-RIP3-MLKL signal pathway, and dramatically inhibited the production of ROS. Collectively, these findings suggest that Nec-1 alleviated paraquat-induced myocardial contractile dysfunction through inhibition of necroptosis, an effect which was likely mediated via the RIP1-RIP3-MLKL signaling cascade. Further, ROS appeared to play an important role in this process. Thus, this process may represent a novel therapeutic strategy for the treatment of paraquat-induced cardiac contractile dysfunction.
Insights
Necrostatin-1 (Nec-1) prevents heart dysfunction caused by paraquat poisoning by inhibiting necroptosis, a programmed cell death pathway. This study shows Nec-1 reduces reactive oxygen species (ROS) and may offer a new treatment for paraquat toxicity.
Area of Science:
- Toxicology
- Cardiovascular Biology
- Cell Death Research
Background:
- Paraquat is a toxic prooxidant causing multi-organ failure, with no effective treatment.
- Necroptosis, a programmed cell death pathway involving RIP1, RIP3, and MLKL, is linked to cardiovascular disease.
Purpose of the Study:
- To investigate the protective effects of Necrostatin-1 (Nec-1) against paraquat-induced cardiac dysfunction.
- To explore the role of necroptosis and reactive oxygen species (ROS) in paraquat cardiotoxicity.
Main Methods:
- Utilized a mouse model to assess paraquat toxicity and the impact of Nec-1 pre-treatment.
- Measured cardiac function, intracellular calcium handling, and echocardiographic parameters.
- Analyzed the expression of necroptosis pathway proteins (RIP1, RIP3, MLKL) and ROS production in heart tissues.
Main Results:
- Paraquat challenge impaired cardiac contractile function, disrupted calcium handling, and caused echocardiographic abnormalities.
- Paraquat increased RIP1, RIP3, MLKL expression, and ROS production in the heart.
- Nec-1 pre-treatment preserved cardiac function, reduced RIP1-RIP3 interaction, inhibited the RIP1-RIP3-MLKL pathway, and decreased ROS levels.
Conclusions:
- Nec-1 alleviates paraquat-induced cardiac contractile dysfunction by inhibiting necroptosis via the RIP1-RIP3-MLKL signaling pathway.
- Reactive oxygen species (ROS) play a significant role in paraquat-induced cardiotoxicity.
- Nec-1 represents a potential novel therapeutic strategy for paraquat-induced cardiac dysfunction.
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