MST1 mediates doxorubicin-induced cardiomyopathy by SIRT3 downregulation

Author:

Schirone Leonardo,Vecchio Daniele,Valenti Valentina,Forte Maurizio,Relucenti Michela,Angelini Annalisa,Zaglia Tania,Schiavon Sonia,D’Ambrosio Luca,Sarto Gianmarco,Stanzione Rosita,Mangione Elisa,Miglietta Selenia,Di Bona Anna,Fedrigo Marny,Ghigo Alessandra,Versaci Francesco,Petrozza Vincenzo,Marchitti Simona,Rubattu Speranza,Volpe Massimo,Sadoshima Junichi,Frati Luigi,Frati Giacomo,Sciarretta SebastianoORCID

Abstract

AbstractHeart failure is a major side effect of doxorubicin (DOX) treatment in patients with cancer. However, the mechanisms underlying the development of DOX-induced heart failure need to be addressed. This study aims to test whether the serine/threonine kinase MST1, a major Hippo pathway component, contributes to the development of DOX-induced myocardial injury. C57BL/6J WT mice and mice with cardiomyocyte-specific dominant-negative MST1 (kinase-dead) overexpression received three weekly injections of DOX, reaching a final cumulative dose of 18 mg/kg. Echocardiographic, histological and biochemical analyses were performed six weeks after the first DOX administration. The effects of MST1 inhibition on DOX-induced cardiomyocyte injury were also tested in vitro. MST1 signaling was significantly activated in cardiomyocytes in response to DOX treatment in vitro and in vivo. Wild-type (WT) mice treated with DOX developed cardiac dysfunction and mitochondrial abnormalities. However, these detrimental effects were abolished in mice with cardiomyocyte-specific overexpression of dominant-negative MST1 (DN-MST1) or treated with XMU-MP-1, a specific MST1 inhibitor, indicating that MST1 inhibition attenuates DOX-induced cardiac dysfunction. DOX treatment led to a significant downregulation of cardiac levels of SIRT3, a deacetylase involved in mitochondrial protection, in WT mice, which was rescued by MST1 inhibition. Pharmacological inhibition of SIRT3 blunted the protective effects of MST1 inhibition, indicating that SIRT3 downregulation mediates the cytotoxic effects of MST1 activation in response to DOX treatment. Finally, we found a significant upregulation of MST1 and downregulation of SIRT3 levels in human myocardial tissue of cancer patients treated with DOX. In summary, MST1 contributes to DOX-induced cardiomyopathy through SIRT3 downregulation.

Funder

Ministero dell’Istruzione, dell’Università e della Ricerca

Sapienza Università di Roma

Istituto Pasteur-Fondazione Cenci Bolognetti

Ministero della Salute

European Union - NextGenerationEU

Università degli Studi di Roma La Sapienza

Publisher

Springer Science and Business Media LLC

Subject

Cell Biology,Cellular and Molecular Neuroscience,Pharmacology,Molecular Biology,Molecular Medicine

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