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Mitochondrial citrate carrier SLC25A1 is a dosage-dependent regulator of metabolic reprogramming and morphogenesis in the developing heart

Chiemela Ohanele, Jessica N. Peoples, Anja Karlstaedt, Joshua T. Geiger, Ashley D. Gayle, Nasab Ghazal, Fateemaa Sohani, Milton E. Brown, Michael E. Davis, George A. Porter Jr., View ORCID ProfileVictor Faundez, View ORCID ProfileJennifer Q. Kwong
doi: https://doi.org/10.1101/2023.05.22.541833
Chiemela Ohanele
1Graduate Program in Biochemistry, Cell and Developmental Biology; Graduate Division of Biological and Biomedical Sciences; Emory University; Atlanta, GA, USA
2Division of Pediatric Cardiology; Department of Pediatrics; Emory University School of Medicine; and Children’s Healthcare of Atlanta; Atlanta, GA, USA
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Jessica N. Peoples
2Division of Pediatric Cardiology; Department of Pediatrics; Emory University School of Medicine; and Children’s Healthcare of Atlanta; Atlanta, GA, USA
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Anja Karlstaedt
3Department of Cardiology; Smidt Heart Institute; Cedars-Sinai Medical Center; Los Angeles, CA, USA
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Joshua T. Geiger
4Division of Vascular Surgery; University of Rochester Medical Center; Rochester, NY, USA
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Ashley D. Gayle
2Division of Pediatric Cardiology; Department of Pediatrics; Emory University School of Medicine; and Children’s Healthcare of Atlanta; Atlanta, GA, USA
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Nasab Ghazal
1Graduate Program in Biochemistry, Cell and Developmental Biology; Graduate Division of Biological and Biomedical Sciences; Emory University; Atlanta, GA, USA
2Division of Pediatric Cardiology; Department of Pediatrics; Emory University School of Medicine; and Children’s Healthcare of Atlanta; Atlanta, GA, USA
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Fateemaa Sohani
2Division of Pediatric Cardiology; Department of Pediatrics; Emory University School of Medicine; and Children’s Healthcare of Atlanta; Atlanta, GA, USA
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Milton E. Brown
5Wallace H. Coulter Department of Biomedical Engineering; Emory University School of Medicine; Atlanta, GA, USA
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Michael E. Davis
5Wallace H. Coulter Department of Biomedical Engineering; Emory University School of Medicine; Atlanta, GA, USA
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George A. Porter Jr.
6Department of Pediatrics; Division of Cardiology; University of Rochester Medical Center; Rochester, NY, USA
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Victor Faundez
7Department of Cell Biology; Emory University School of Medicine; Atlanta, GA, USA
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  • ORCID record for Victor Faundez
Jennifer Q. Kwong
2Division of Pediatric Cardiology; Department of Pediatrics; Emory University School of Medicine; and Children’s Healthcare of Atlanta; Atlanta, GA, USA
7Department of Cell Biology; Emory University School of Medicine; Atlanta, GA, USA
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  • ORCID record for Jennifer Q. Kwong
  • For correspondence: jennifer.kwong@emory.edu
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SUMMARY

The developing mammalian heart undergoes an important metabolic shift from glycolysis toward mitochondrial oxidation, such that oxidative phosphorylation defects may present with cardiac abnormalities. Here, we describe a new mechanistic link between mitochondria and cardiac morphogenesis, uncovered by studying mice with systemic loss of the mitochondrial citrate carrier SLC25A1. Slc25a1 null embryos displayed impaired growth, cardiac malformations, and aberrant mitochondrial function. Importantly, Slc25a1 haploinsufficient embryos, which are overtly indistinguishable from wild type, exhibited an increased frequency of these defects, suggesting Slc25a1 dose-dependent effects. Supporting clinical relevance, we found a near-significant association between ultrarare human pathogenic SLC25A1 variants and pediatric congenital heart disease. Mechanistically, SLC25A1 may link mitochondria to transcriptional regulation of metabolism through epigenetic control of PPARγ to promote metabolic remodeling in the developing heart. Collectively, this work positions SLC25A1 as a novel mitochondrial regulator of ventricular morphogenesis and cardiac metabolic maturation and suggests a role in congenital heart disease.

Competing Interest Statement

The authors have declared no competing interest.

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Posted May 22, 2023.
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Mitochondrial citrate carrier SLC25A1 is a dosage-dependent regulator of metabolic reprogramming and morphogenesis in the developing heart
Chiemela Ohanele, Jessica N. Peoples, Anja Karlstaedt, Joshua T. Geiger, Ashley D. Gayle, Nasab Ghazal, Fateemaa Sohani, Milton E. Brown, Michael E. Davis, George A. Porter Jr., Victor Faundez, Jennifer Q. Kwong
bioRxiv 2023.05.22.541833; doi: https://doi.org/10.1101/2023.05.22.541833
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Mitochondrial citrate carrier SLC25A1 is a dosage-dependent regulator of metabolic reprogramming and morphogenesis in the developing heart
Chiemela Ohanele, Jessica N. Peoples, Anja Karlstaedt, Joshua T. Geiger, Ashley D. Gayle, Nasab Ghazal, Fateemaa Sohani, Milton E. Brown, Michael E. Davis, George A. Porter Jr., Victor Faundez, Jennifer Q. Kwong
bioRxiv 2023.05.22.541833; doi: https://doi.org/10.1101/2023.05.22.541833

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