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

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 char...

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Autores principales: 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
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cell Press 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8432967/
https://www.ncbi.nlm.nih.gov/pubmed/34358431
http://dx.doi.org/10.1016/j.cmet.2021.07.015
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author 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
author_facet 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
author_sort Fan, Zheng
collection PubMed
description 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 ATF3/4(low) 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 ATF3/4(low) 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.
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spelling pubmed-84329672021-09-14 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 Cell Metab Article 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 ATF3/4(low) 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 ATF3/4(low) 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. Cell Press 2021-09-07 /pmc/articles/PMC8432967/ /pubmed/34358431 http://dx.doi.org/10.1016/j.cmet.2021.07.015 Text en © 2021 The Authors https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Article
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
Exercise-induced angiogenesis is dependent on metabolically primed ATF3/4(+) endothelial cells
title Exercise-induced angiogenesis is dependent on metabolically primed ATF3/4(+) endothelial cells
title_full Exercise-induced angiogenesis is dependent on metabolically primed ATF3/4(+) endothelial cells
title_fullStr Exercise-induced angiogenesis is dependent on metabolically primed ATF3/4(+) endothelial cells
title_full_unstemmed Exercise-induced angiogenesis is dependent on metabolically primed ATF3/4(+) endothelial cells
title_short Exercise-induced angiogenesis is dependent on metabolically primed ATF3/4(+) endothelial cells
title_sort exercise-induced angiogenesis is dependent on metabolically primed atf3/4(+) endothelial cells
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8432967/
https://www.ncbi.nlm.nih.gov/pubmed/34358431
http://dx.doi.org/10.1016/j.cmet.2021.07.015
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