HIF‐1α limits myocardial infarction by promoting mitophagy in mouse hearts adapted to chronic hypoxia

Author:

Alanova Petra1ORCID,Alan Lukas23,Opletalova Barbora14,Bohuslavova Romana5,Abaffy Pavel6,Matejkova Katerina5,Holzerova Kristyna1,Benak Daniel1,Kaludercic Nina789,Menabo Roberta8,Di Lisa Fabio78,Ostadal Bohuslav1,Kolar Frantisek1,Pavlinkova Gabriela5

Affiliation:

1. Laboratory of Developmental Cardiology Institute of Physiology of the Czech Academy of Sciences Prague Czech Republic

2. Laboratory of Bioenergetics Institute of Physiology of the Czech Academy of Sciences Prague Czech Republic

3. Department of Biology University of Padova Padova Italy

4. Faculty of Science Charles University Prague Czech Republic

5. Laboratory of Molecular Pathogenetics Institute of Biotechnology, Czech Academy of Sciences Vestec Czechia

6. Laboratory of Gene Expression Institute of Biotechnology, Czech Academy of Sciences Vestec Czechia

7. Department of Biomedical Sciences University of Padova Padova Italy

8. Neuroscience Institute National Research Council of Italy (CNR) Padova Italy

9. Fondazione Istituto di Ricerca Pediatrica Città della Speranza (IRP) Padova Italy

Abstract

AbstractAimThe transcriptional factor HIF‐1α is recognized for its contribution to cardioprotection against acute ischemia/reperfusion injury. Adaptation to chronic hypoxia (CH) is known to stabilize HIF‐1α and increase myocardial ischemic tolerance. However, the precise role of HIF‐1α in mediating the protective effect remains incompletely understood.MethodsMale wild‐type (WT) mice and mice with partial Hif1a deficiency (hif1a +/−) were exposed to CH for 4 weeks, while their respective controls were kept under normoxic conditions. Subsequently, their isolated perfused hearts were subjected to ischemia/reperfusion to determine infarct size, while RNA‐sequencing of isolated cardiomyocytes was performed. Mitochondrial respiration was measured to evaluate mitochondrial function, and western blots were performed to assess mitophagy.ResultsWe demonstrated enhanced ischemic tolerance in WT mice induced by adaptation to CH compared with their normoxic controls and chronically hypoxic hif1a +/− mice. Through cardiomyocyte bulk mRNA sequencing analysis, we unveiled significant reprogramming of cardiomyocytes induced by CH emphasizing mitochondrial processes. CH reduced mitochondrial content and respiration and altered mitochondrial ultrastructure. Notably, the reduced mitochondrial content correlated with enhanced autophagosome formation exclusively in chronically hypoxic WT mice, supported by an increase in the LC3‐II/LC3‐I ratio, expression of PINK1, and degradation of SQSTM1/p62. Furthermore, pretreatment with the mitochondrial division inhibitor (mdivi‐1) abolished the infarct size‐limiting effect of CH in WT mice, highlighting the key role of mitophagy in CH‐induced cardioprotection.ConclusionThese findings provide new insights into the contribution of HIF‐1α to cardiomyocyte survival during acute ischemia/reperfusion injury by activating the selective autophagy pathway.

Funder

Ministerstvo Zdravotnictví Ceské Republiky

Univerzita Karlova v Praze

Akademie Věd České Republiky

Publisher

Wiley

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1. How to visualize high‐dimensional data;Acta Physiologica;2024-08-19

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