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Hydrostatic Pressure Controls Angiogenesis Through Endothelial YAP1 During Lung Regeneration

Pulmonary artery (PA) pressure increases during lung growth after unilateral pneumonectomy (PNX). Mechanosensitive transcriptional co-activator, yes-associated protein (YAP1), in endothelial cells (ECs) is necessary for angiogenesis during post-PNX lung growth. We investigate whether increases in PA...

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Autores principales: Mammoto, Tadanori, Hunyenyiwa, Tendai, Kyi, Priscilla, Hendee, Kathryn, Matus, Kienna, Rao, Sridhar, Lee, Sang H., Tabima, Diana M., Chesler, Naomi C., Mammoto, Akiko
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8896883/
https://www.ncbi.nlm.nih.gov/pubmed/35252132
http://dx.doi.org/10.3389/fbioe.2022.823642
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author Mammoto, Tadanori
Hunyenyiwa, Tendai
Kyi, Priscilla
Hendee, Kathryn
Matus, Kienna
Rao, Sridhar
Lee, Sang H.
Tabima, Diana M.
Chesler, Naomi C.
Mammoto, Akiko
author_facet Mammoto, Tadanori
Hunyenyiwa, Tendai
Kyi, Priscilla
Hendee, Kathryn
Matus, Kienna
Rao, Sridhar
Lee, Sang H.
Tabima, Diana M.
Chesler, Naomi C.
Mammoto, Akiko
author_sort Mammoto, Tadanori
collection PubMed
description Pulmonary artery (PA) pressure increases during lung growth after unilateral pneumonectomy (PNX). Mechanosensitive transcriptional co-activator, yes-associated protein (YAP1), in endothelial cells (ECs) is necessary for angiogenesis during post-PNX lung growth. We investigate whether increases in PA pressure following PNX control-angiogenesis through YAP1. When hydrostatic pressure is applied to human pulmonary arterial ECs (HPAECs), the expression of YAP1, transcription factor TEAD1, and angiogenic factor receptor Tie2 increases, while these effects are inhibited when HPAECs are treated with YAP1 siRNA or YAP1S94A mutant that fails to bind to TEAD1. Hydrostatic pressure also stimulates DNA synthesis, cell migration, and EC sprouting in HPAECs, while YAP1 knockdown or YAP1S94A mutant inhibits the effects. Gene enrichment analysis reveals that the levels of genes involved in extracellular matrix (ECM), cell adhesion, regeneration, or angiogenesis are altered in post-PNX mouse lung ECs, which interact with YAP1. Exosomes are known to promote tissue regeneration. Proteomics analysis reveals that exosomes isolated from conditioned media of post-PNX mouse lung ECs contain the higher levels of ECM and cell-adhesion proteins compared to those from sham-operated mouse lung ECs. Recruitment of host lung ECs and blood vessel formation are stimulated in the fibrin gel containing exosomes isolated from post-PNX mouse lung ECs or pressurized ECs, while YAP1 knockdown inhibits the effects. These results suggest that increases in PA pressure stimulate angiogenesis through YAP1 during regenerative lung growth.
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spelling pubmed-88968832022-03-05 Hydrostatic Pressure Controls Angiogenesis Through Endothelial YAP1 During Lung Regeneration Mammoto, Tadanori Hunyenyiwa, Tendai Kyi, Priscilla Hendee, Kathryn Matus, Kienna Rao, Sridhar Lee, Sang H. Tabima, Diana M. Chesler, Naomi C. Mammoto, Akiko Front Bioeng Biotechnol Bioengineering and Biotechnology Pulmonary artery (PA) pressure increases during lung growth after unilateral pneumonectomy (PNX). Mechanosensitive transcriptional co-activator, yes-associated protein (YAP1), in endothelial cells (ECs) is necessary for angiogenesis during post-PNX lung growth. We investigate whether increases in PA pressure following PNX control-angiogenesis through YAP1. When hydrostatic pressure is applied to human pulmonary arterial ECs (HPAECs), the expression of YAP1, transcription factor TEAD1, and angiogenic factor receptor Tie2 increases, while these effects are inhibited when HPAECs are treated with YAP1 siRNA or YAP1S94A mutant that fails to bind to TEAD1. Hydrostatic pressure also stimulates DNA synthesis, cell migration, and EC sprouting in HPAECs, while YAP1 knockdown or YAP1S94A mutant inhibits the effects. Gene enrichment analysis reveals that the levels of genes involved in extracellular matrix (ECM), cell adhesion, regeneration, or angiogenesis are altered in post-PNX mouse lung ECs, which interact with YAP1. Exosomes are known to promote tissue regeneration. Proteomics analysis reveals that exosomes isolated from conditioned media of post-PNX mouse lung ECs contain the higher levels of ECM and cell-adhesion proteins compared to those from sham-operated mouse lung ECs. Recruitment of host lung ECs and blood vessel formation are stimulated in the fibrin gel containing exosomes isolated from post-PNX mouse lung ECs or pressurized ECs, while YAP1 knockdown inhibits the effects. These results suggest that increases in PA pressure stimulate angiogenesis through YAP1 during regenerative lung growth. Frontiers Media S.A. 2022-02-18 /pmc/articles/PMC8896883/ /pubmed/35252132 http://dx.doi.org/10.3389/fbioe.2022.823642 Text en Copyright © 2022 Mammoto, Hunyenyiwa, Kyi, Hendee, Matus, Rao, Lee, Tabima, Chesler and Mammoto. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Bioengineering and Biotechnology
Mammoto, Tadanori
Hunyenyiwa, Tendai
Kyi, Priscilla
Hendee, Kathryn
Matus, Kienna
Rao, Sridhar
Lee, Sang H.
Tabima, Diana M.
Chesler, Naomi C.
Mammoto, Akiko
Hydrostatic Pressure Controls Angiogenesis Through Endothelial YAP1 During Lung Regeneration
title Hydrostatic Pressure Controls Angiogenesis Through Endothelial YAP1 During Lung Regeneration
title_full Hydrostatic Pressure Controls Angiogenesis Through Endothelial YAP1 During Lung Regeneration
title_fullStr Hydrostatic Pressure Controls Angiogenesis Through Endothelial YAP1 During Lung Regeneration
title_full_unstemmed Hydrostatic Pressure Controls Angiogenesis Through Endothelial YAP1 During Lung Regeneration
title_short Hydrostatic Pressure Controls Angiogenesis Through Endothelial YAP1 During Lung Regeneration
title_sort hydrostatic pressure controls angiogenesis through endothelial yap1 during lung regeneration
topic Bioengineering and Biotechnology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8896883/
https://www.ncbi.nlm.nih.gov/pubmed/35252132
http://dx.doi.org/10.3389/fbioe.2022.823642
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