Inhibition of PIKfyve prevents myocardial apoptosis and hypertrophy through activation of SIRT3 in obese mice

Archive ouverte

Tronchere, Helene | Cinato, Mathieu | Timotin, Andrei | Guitou, Laurie | Villedieu, Camille | Thibault, Helene | Baetz, Delphine | Payrastre, Bernard | Valet, Philippe | Parini, Angelo | Kunduzova, Oksana | Boal, Frederic

Edité par CCSD ; Wiley Open Access -

International audience. PIKfyve is an evolutionarily conserved lipid kinase that regulates pleiotropic cellular functions. Here, we identify PIKfyve as a key regulator of cardiometabolic status and mitochondrial integrity in chronic diet-induced obesity. In vitro, we show that PIKfyve is critical for the control of mitochondrial fragmentation and hypertrophic and apoptotic responses to stress. We also provide evidence that inactivation of PIKfyve by the selective inhibitor STA suppresses excessive mitochondrial ROS production and apoptosis through a SIRT3-dependent pathway in cardiomyoblasts. In addition, we report that chronic STA treatment improves cardiometabolic profile in a mouse model of cardiomyopathy linked to obesity. We provide evidence that PIKfyve inhibition reverses obesity-induced cardiac mitochondrial damage and apoptosis by activating SIRT3. Furthermore, treatment of obese mice with STA improves left ventricular function and attenuates cardiac hypertrophy. In contrast, STA is not able to reduce isoproterenol-induced cardiac hypertrophy in SIRT3. KO mice. Altogether, these results unravel a novel role for PIKfyve in obesity-associated cardiomyopathy and provide a promising therapeutic strategy to combat cardiometabolic complications in obesity.

Consulter en ligne

Suggestions

Du même auteur

Inhibition of PIKfyve prevents myocardial apoptosis and hypertrophy through activation of SIRT3 in obese mice

Archive ouverte | Tronchère, Hélène | CCSD

International audience

Apilimod alters TGFβ signaling pathway and prevents cardiac fibrotic remodeling

Archive ouverte | Cinato, Mathieu | CCSD

International audience. Rationale: TGFβ signaling pathway controls tissue fibrotic remodeling, a hallmark in many diseases leading to organ injury and failure. In this study, we address the role of Apilimod, a pharm...

Galanin promotes autophagy and alleviates apoptosis in the hypertrophied heart through FoxO1 pathway

Archive ouverte | Martinelli, Ilenia | CCSD

International audience. Autophagy and apoptosis are powerful regulators of multiple facets of cellular metabolism and homeostasis. Here, we uncover that galanin, a pleiotropic peptide, regulates cardiac autophagy an...

Chargement des enrichissements...