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TRPC1 contributes to endotoxemia-induced myocardial dysfunction via mediating myocardial apoptosis and autophagy
Wen Tian1, Shao-Yuan Liu1, Meng Zhang1
1Department of Pharmacology, School of Pharmacy, Fourth Military Medical University, Xi'an, Shaanxi 710032, China; Key Laboratory of Gastrointestinal Pharmacology of Chinese Materia Medica of the State Administration of Traditional Chinese Medicine, Xi'an, Shaanxi 710032, China; Shaanxi Key Laboratory of "Qin Medicine" Research and Development, Shaanxi Administration of Traditional Chinese Medicine, Xi'an, Shaanxi 710032, China.
Insights
Transient Receptor Potential Canonical channel 1 (TRPC1) exacerbates endotoxemia-induced cardiac dysfunction by promoting apoptosis and autophagy. TRPC1 inhibition offers a potential therapeutic strategy for sepsis-related heart conditions.
Area of Science:
- Cardiology
- Molecular Biology
- Pathophysiology
Background:
- Endotoxemia (ETM) causes cardiac dysfunction with limited treatments.
- Transient Receptor Potential Canonical channel 1 (TRPC1) is implicated in heart diseases, but its role in ETM-induced cardiac dysfunction is unclear.
Purpose of the Study:
- To investigate the role of TRPC1 in endotoxemia-induced cardiac dysfunction.
- To elucidate the underlying molecular mechanisms involving TRPC1, apoptosis, autophagy, and calcium signaling.
Main Methods:
- Lipopolysaccharide (LPS) challenge in mice to induce endotoxemia.
- TRPC1 knockdown and genetic deletion (Trpc1-/-) in mice.
- Myocardial mRNA sequencing, apoptosis assays, and autophagy flux analysis.
- Pharmacological inhibition of calpain and manipulation of caveolin-1 interaction with TRPC1.
Main Results:
- TRPC1 expression increased in LPS-challenged hearts; TRPC1 knockdown ameliorated cardiac dysfunction and injury.
- TRPC1 mediated LPS-induced myocardial apoptosis and autophagy by regulating intracellular Ca2+ release, calpain activation, and caveolin-1 degradation.
- Targeting the TRPC1-caveolin-1-calpain axis with cavtratin or PD150606 alleviated cardiac dysfunction in mouse models of sepsis.
Conclusions:
- TRPC1 plays a critical role in endotoxemia-induced cardiac dysfunction.
- TRPC1 promotes cardiac injury by regulating apoptosis and autophagy via the caveolin-1/calpain pathway.
- TRPC1 and its downstream signaling axis represent potential therapeutic targets for sepsis-induced heart complications.
Abstract:
Cardiac dysfunction is a vital complication of endotoxemia (ETM) with limited therapeutic options. Transient receptor potential canonical channel (TRPC)1 was involved in various heart diseases. While, the role of TRPC1 in ETM-induced cardiac dysfunction remains to be defined. In this study, we found that TRPC1 protein expression was significantly upregulated in hearts of lipopolysaccharide (LPS)-challenged mice. What's more, TRPC1 knockdown significantly alleviated LPS-induced cardiac dysfunction and injury. Further myocardial mRNA-sequencing analysis revealed that TRPC1 might participate in pathogenesis of ETM-induced cardiac dysfunction via mediating myocardial apoptosis and autophagy. Data showed that knockdown of TRPC1 significantly ameliorated LPS-induced myocardial apoptotic injury, cardiomyocytes autophagosome accumulation, and myocardial autophagic flux. Simultaneously, deletion of TRPC1 reversed LPS-induced molecular changes of apoptosis/autophagy signaling pathway in cardiomyocytes. Moreover, TRPC1 could promote LPS-triggered intracellular Ca2+ release, subsequent calpain activation and caveolin-1 degradation. Either blocking calpain by PD150606 or enhancing the amount of caveolin-1 scaffolding domain that interacts with TRPC1 by cell-permeable peptide cavtratin significantly alleviated the LPS-induced cardiac dysfunction and cardiomyocytes apoptosis/autophagy. Furthermore, cavtratin could inhibit LPS-induced calpain activation in cardiomyocytes. caveolin-1 could directly interact with calpain 2 both in vivo and in vitro. Importantly, cecal ligation and puncture-stimulated cardiac dysfunction and mortality were significantly alleviated in Trpc1-/- and cavtratin-treated mice, which further validated the contribution of TRPC1-caveolin-1 signaling axis in sepsis-induced pathological process. Overall, this study indicated that TRPC1 could promote LPS-triggered intracellular Ca2+ release, mediate caveolin-1 reduction, and in turn activates calpain to regulate myocardial apoptosis and autophagy, contributing to ETM-induced cardiac dysfunction of mice.
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