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Exercise-induced angiogenesis is dependent on metabolically primed ATF3/4+ endothelial cells

Fan, Zheng; Turiel, Guillermo; Ardicoglu, Raphaela; Ghobrial, Moheb; Masschelein, Evi; Kocijan, Tea; Zhang, Jing; Tan, Ge; Fitzgerald, Gillian; Gorski, Tatiane; Alvarado-Diaz, Abdiel; Gilardoni, Paola; Adams, Christopher M; Ghesquière, Bart; De Bock, Katrien (2021). Exercise-induced angiogenesis is dependent on metabolically primed ATF3/4+ endothelial cells. Cell Metabolism, 33(9):1793-1807.e9.

Abstract

Exercise is a powerful driver of physiological angiogenesis during adulthood, but the mechanisms of exercise-induced vascular expansion are poorly understood. We explored endothelial heterogeneity in skeletal muscle and identified two capillary muscle endothelial cell (mEC) populations that are characterized by differential expression of ATF3/4. Spatial mapping showed that ATF3/4+ mECs are enriched in red oxidative muscle areas while ATF3/4low ECs lie adjacent to white glycolytic fibers. In vitro and in vivo experiments revealed that red ATF3/4+ mECs are more angiogenic when compared with white ATF3/4low mECs. Mechanistically, ATF3/4 in mECs control genes involved in amino acid uptake and metabolism and metabolically prime red (ATF3/4+) mECs for angiogenesis. As a consequence, supplementation of non-essential amino acids and overexpression of ATF4 increased proliferation of white mECs. Finally, deleting Atf4 in ECs impaired exercise-induced angiogenesis. Our findings illustrate that spatial metabolic angiodiversity determines the angiogenic potential of muscle ECs.

Additional indexing

Item Type:Journal Article, refereed, original work
Communities & Collections:04 Faculty of Medicine > Functional Genomics Center Zurich
04 Faculty of Medicine > University Children's Hospital Zurich > Medical Clinic
04 Faculty of Medicine > Institute of Laboratory Animal Science
05 Vetsuisse Faculty > Veterinärwissenschaftliches Institut > Institute of Laboratory Animal Science
Dewey Decimal Classification:570 Life sciences; biology
590 Animals (Zoology)
610 Medicine & health
Scopus Subject Areas:Life Sciences > Physiology
Life Sciences > Molecular Biology
Life Sciences > Cell Biology
Uncontrolled Keywords:Cell Biology, Molecular Biology, Physiology
Language:English
Date:1 September 2021
Deposited On:05 Aug 2022 16:40
Last Modified:19 Mar 2025 04:31
Publisher:Cell Press (Elsevier)
ISSN:1550-4131
OA Status:Hybrid
Free access at:PubMed ID. An embargo period may apply.
Publisher DOI:https://doi.org/10.1016/j.cmet.2021.07.015
PubMed ID:34358431
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  • Language: English
  • Licence: Creative Commons: Attribution-NonCommercial-NoDerivatives 4.0 International (CC BY-NC-ND 4.0)

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