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Mitochondrial dysfunction induces ALK5-SMAD2-mediated hypovascularization and arteriovenous malformations in mouse retinas.
Zhang, Haifeng; Li, Busu; Huang, Qunhua; López-Giráldez, Francesc; Tanaka, Yoshiaki; Lin, Qun; Mehta, Sameet; Wang, Guilin; Graham, Morven; Liu, Xinran; Park, In-Hyun; Eichmann, Anne; Min, Wang; Zhou, Jenny Huanjiao.
Affiliation
  • Zhang H; Interdepartmental Program in Vascular Biology and Therapeutics, Department of Pathology, Yale University School of Medicine, New Haven, CT, USA.
  • Li B; Interdepartmental Program in Vascular Biology and Therapeutics, Department of Pathology, Yale University School of Medicine, New Haven, CT, USA.
  • Huang Q; Interdepartmental Program in Vascular Biology and Therapeutics, Department of Pathology, Yale University School of Medicine, New Haven, CT, USA.
  • López-Giráldez F; Yale Center for Genomic Analysis, Department of Genetics, Yale University School of Medicine, New Haven, CT, USA.
  • Tanaka Y; Yale Stem Cell Center, Department of Genetics, Yale University School of Medicine, New Haven, CT, USA.
  • Lin Q; Maisonneuve-Rosemont Hospital Research Center (CRHMR), Department of Medicine, University of Montreal, Montreal, QC, Canada.
  • Mehta S; Interdepartmental Program in Vascular Biology and Therapeutics, Department of Pathology, Yale University School of Medicine, New Haven, CT, USA.
  • Wang G; Yale Center for Genomic Analysis, Department of Genetics, Yale University School of Medicine, New Haven, CT, USA.
  • Graham M; Yale Center for Genomic Analysis, Department of Genetics, Yale University School of Medicine, New Haven, CT, USA.
  • Liu X; Department of Cell Biology, Yale University School of Medicine, New Haven, CT, USA.
  • Park IH; Department of Cell Biology, Yale University School of Medicine, New Haven, CT, USA.
  • Eichmann A; Yale Center for Genomic Analysis, Department of Genetics, Yale University School of Medicine, New Haven, CT, USA.
  • Min W; Department of Internal Medicine (Cardiology) and Cellular and Molecular Physiology, Yale University School of Medicine, New Haven, CT, USA.
  • Zhou JH; Interdepartmental Program in Vascular Biology and Therapeutics, Department of Pathology, Yale University School of Medicine, New Haven, CT, USA. mike.wang388@gmail.com.
Nat Commun ; 13(1): 7637, 2022 12 10.
Article in En | MEDLINE | ID: mdl-36496409
ABSTRACT
Although mitochondrial activity is critical for angiogenesis, its mechanism is not entirely clear. Here we show that mice with endothelial deficiency of any one of the three nuclear genes encoding for mitochondrial proteins, transcriptional factor (TFAM), respiratory complex IV component (COX10), or redox protein thioredoxin 2 (TRX2), exhibit retarded retinal vessel growth and arteriovenous malformations (AVM). Single-cell RNA-seq analyses indicate that retinal ECs from the three mutant mice have increased TGFß signaling and altered gene expressions associated with vascular maturation and extracellular matrix, correlating with vascular malformation and increased basement membrane thickening in microvesels of mutant retinas. Mechanistic studies suggest that mitochondrial dysfunction from Tfam, Cox10, or Trx2 depletion induces a mitochondrial localization and MAPKs-mediated phosphorylation of SMAD2, leading to enhanced ALK5-SMAD2 signaling. Importantly, pharmacological blockade of ALK5 signaling or genetic deficiency of SMAD2 prevented retinal vessel growth retardation and AVM in all three mutant mice. Our studies uncover a novel mechanism whereby mitochondrial dysfunction via the ALK5-SMAD2 signaling induces retinal vascular malformations, and have therapeutic values for the alleviation of angiogenesis-associated human retinal diseases.
Subject(s)

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Arteriovenous Malformations / Smad2 Protein / Receptor, Transforming Growth Factor-beta Type I Limits: Animals Language: En Journal: Nat Commun Journal subject: BIOLOGIA / CIENCIA Year: 2022 Document type: Article Affiliation country:

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Arteriovenous Malformations / Smad2 Protein / Receptor, Transforming Growth Factor-beta Type I Limits: Animals Language: En Journal: Nat Commun Journal subject: BIOLOGIA / CIENCIA Year: 2022 Document type: Article Affiliation country:
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