Dysfunction of mitochondrial pyruvate oxidation and aberrant respiratory chain components are common in cardiac defects. However, the precise role of mitochondrial respiration in cardiomyocyte hypertrophy is unclear. Phenylephrine (PE) treatment of rat neonatal H9c2 cardiomyocytes promotes significant hypertrophy with decreased mitochondrial oxygen consumption rate (OCR), membrane potential, respiratory subunit NDUFB8, UQCRC2 and ATP5A (ATP5F1A) expression, and accumulation of reactive oxygen species (ROS). Surprisingly, a 60% reduction in cell survival was observed in PE-treated cells relative to control cells when grown under the respiratory-proficient galactose medium. To revert H9c2 hypertrophy and increase survival, we performed a screening with compounds that boost mitochondrial OCR and scavenge ROS, and identified pyruvate plus uridine as the best hit. As corroboration of the in vitro study, supplementation of pyruvate plus uridine significantly prevented PE-induced cardiac hypertrophy, pericardial edema and bradycardia symptoms in zebrafish embryos. Moreover, pyruvate plus uridine decreased the ventricular and atrial area in cardiomyocyte-specific GFP transgenic Tg (myl7:HRAS-EGFP) lines. Using in vitro and in vivo models, we show that boosting of mitochondrial respiration through pyruvate supplementation and scavenging ROS through uridine supplementation jointly ameliorate cardiac hypertrophy and bradycardia symptoms.

Author contributions

Conceptualization: S.P.H., A.S., A.G.; Data curation: S.M., Shreya Das, Surajit Das, S.G.; Funding acquisition: A.G.; Investigation: S.M., Shreya Das, Surajit Das, S.G.; Methodology: S.M., Shreya Das; Project administration: A.G.; Resources: A.S., A.G.; Supervision: S.P.H., A.S., A.G.; Writing – original draft: S.M., A.G.; Writing – review & editing: A.G.

Funding

S.M. thanks the University Grants Commission (UGC), India, for the research fellowship (MAY2018-353734). Shreya Das thanks the University Grants Commission (UGC), India, for the research fellowship (NOV2017-341658). Surajit Das thanks the University Grants Commission (UGC), India, for the research fellowship (201610094029). A.G. would like to acknowledge support from Science and Engineering Research Board (SERB) India (CRG/2022/004010), the University of Calcutta, and UGC-DAE Consortium for Scientific Research project (CRS/2021-22/02/505), the Government of India.

Data and resource availability

All relevant data and details of resources can be found within the article and its supplementary information.

Special Issue

This article is part of the Special Issue ‘Cell Biology of Mitochondria’, guest edited by Ana J. Garcia-Saez and Heidi McBride. See related articles at https://journals.biologists.com/jcs/issue/138/9.

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