SMYD1a protects the heart from ischemic injury by regulating OPA1-mediated cristae remodeling and supercomplex formation

Author:

Szulik Marta W.ORCID,Valdez Steven,Walsh Maureen,Davis Kathryn,Bia Ryan,Horiuchi Emilee,O’Very Sean,Laxman Anil K.,Sandaklie-Nicolova Linda,Eberhardt David R.,Durrant Jessica R.,Sheikh Hanin,Hickenlooper Samuel,Creed Magnus,Brady Cameron,Miller Mickey,Wang Li,Garcia-Llana June,Tracy Christopher,Drakos Stavros G.,Funai Katsuhiko,Chaudhuri Dipayan,Boudina Sihem,Franklin Sarah

Abstract

AbstractSMYD1, a striated muscle-specific lysine methyltransferase, was originally shown to play a key role in embryonic cardiac development but more recently we demonstrated that loss of Smyd1 in the murine adult heart leads to cardiac hypertrophy and failure. However, the effects of SMYD1 overexpression in the heart and its molecular function in the cardiomyocyte in response to ischemic stress are unknown. In this study, we show that inducible, cardiomyocyte-specific overexpression of SMYD1a in mice protects the heart from ischemic injury as seen by a > 50% reduction in infarct size and decreased myocyte cell death. We also demonstrate that attenuated pathological remodeling is a result of enhanced mitochondrial respiration efficiency, which is driven by increased mitochondrial cristae formation and stabilization of respiratory chain supercomplexes within the cristae. These morphological changes occur concomitant with increased OPA1 expression, a known driver of cristae morphology and supercomplex formation. Together, these analyses identify OPA1 as a novel downstream target of SMYD1a whereby cardiomyocytes upregulate energy efficiency to dynamically adapt to the energy demands of the cell. In addition, these findings highlight a new epigenetic mechanism by which SMYD1a regulates mitochondrial energetics and functions to protect the heart from ischemic injury.

Funder

The National Institutes of Health

American Heart Association

Nora Eccles Treadwell Foundation

Publisher

Springer Science and Business Media LLC

Subject

Physiology (medical),Cardiology and Cardiovascular Medicine,Physiology

Reference68 articles.

1. Anand R, Wai T, Baker MJ, Kladt N, Schauss AC, Rugarli E, Langer T (2014) The i-AAA protease YME1L and OMA1 cleave OPA1 to balance mitochondrial fusion and fission. J Cell Biol 204:919–929. https://doi.org/10.1083/jcb.201308006

2. Arany Z, Novikov M, Chin S, Ma Y, Rosenzweig A, Spiegelman BM (2006) Transverse aortic constriction leads to accelerated heart failure in mice lacking PPAR-gamma coactivator 1alpha. Proc Natl Acad Sci U S A 103:10086–10091. https://doi.org/10.1073/pnas.0603615103

3. Badolia R, Ramadurai DKA, Abel ED, Ferrin P, Taleb I, Shankar TS, Krokidi AT, Navankasattusas S, McKellar SH, Yin M, Kfoury AG, Wever-Pinzon O, Fang JC, Selzman CH, Chaudhuri D, Rutter J, Drakos SG (2020) The role of nonglycolytic glucose metabolism in myocardial recovery upon mechanical unloading and circulatory support in chronic heart failure. Circulation 142:259–274. https://doi.org/10.1161/CIRCULATIONAHA.119.044452

4. Balderas E, Eberhardt DR, Lee S, Pleinis JM, Sommakia S, Balynas AM, Yin X, Parker MC, Maguire CT, Cho S, Szulik MW, Bakhtina A, Bia RD, Friederich MW, Locke TM, Van Hove JLK, Drakos SG, Sancak Y, Tristani-Firouzi M, Franklin S, Rodan AR, Chaudhuri D (2022) Mitochondrial calcium uniporter stabilization preserves energetic homeostasis during complex I impairment. Nat Commun 13:2769. https://doi.org/10.1038/s41467-022-30236-4

5. Bhat S, Chin A, Shirakabe A, Ikeda Y, Ikeda S, Zhai P, Hsu CP, Sayed D, Abdellatif M, Byun J, Schesing K, Tang F, Tian Y, Babu G, Ralda G, Warren JS, Cho J, Sadoshima J, Oka SI (2019) Recruitment of RNA polymerase II to metabolic gene promoters is inhibited in the failing heart possibly through PGC-1alpha (peroxisome proliferator-activated receptor-gamma coactivator-1alpha) dysregulation. Circ Heart Fail 12:e005529. https://doi.org/10.1161/CIRCHEARTFAILURE.118.005529

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