Shear-induced Notch-Cx37-p27 axis arrests endothelial cell cycle to enable arterial specification
New vessel formation relies on a tightly controlled switch in endothelial biology from proliferating to specializing phenotypes. Here, Fang et al. elucidate the molecular mechanisms of this switch and show that the arterial shear activates a Notch-Cx37-p27 axis promoting endothelial cell cycle arre...
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Nature Portfolio
2017
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oai:doaj.org-article:db347af2168d4593b642250c5c0ab8aa2021-12-02T15:38:45ZShear-induced Notch-Cx37-p27 axis arrests endothelial cell cycle to enable arterial specification10.1038/s41467-017-01742-72041-1723https://doaj.org/article/db347af2168d4593b642250c5c0ab8aa2017-12-01T00:00:00Zhttps://doi.org/10.1038/s41467-017-01742-7https://doaj.org/toc/2041-1723New vessel formation relies on a tightly controlled switch in endothelial biology from proliferating to specializing phenotypes. Here, Fang et al. elucidate the molecular mechanisms of this switch and show that the arterial shear activates a Notch-Cx37-p27 axis promoting endothelial cell cycle arrest and enabling arterial gene expression.Jennifer S. FangBrian G. CoonNoelle GillisZehua ChenJingyao QiuThomas W. ChittendenJanis M. BurtMartin A. SchwartzKaren K. HirschiNature PortfolioarticleScienceQENNature Communications, Vol 8, Iss 1, Pp 1-14 (2017) |
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Science Q Jennifer S. Fang Brian G. Coon Noelle Gillis Zehua Chen Jingyao Qiu Thomas W. Chittenden Janis M. Burt Martin A. Schwartz Karen K. Hirschi Shear-induced Notch-Cx37-p27 axis arrests endothelial cell cycle to enable arterial specification |
description |
New vessel formation relies on a tightly controlled switch in endothelial biology from proliferating to specializing phenotypes. Here, Fang et al. elucidate the molecular mechanisms of this switch and show that the arterial shear activates a Notch-Cx37-p27 axis promoting endothelial cell cycle arrest and enabling arterial gene expression. |
format |
article |
author |
Jennifer S. Fang Brian G. Coon Noelle Gillis Zehua Chen Jingyao Qiu Thomas W. Chittenden Janis M. Burt Martin A. Schwartz Karen K. Hirschi |
author_facet |
Jennifer S. Fang Brian G. Coon Noelle Gillis Zehua Chen Jingyao Qiu Thomas W. Chittenden Janis M. Burt Martin A. Schwartz Karen K. Hirschi |
author_sort |
Jennifer S. Fang |
title |
Shear-induced Notch-Cx37-p27 axis arrests endothelial cell cycle to enable arterial specification |
title_short |
Shear-induced Notch-Cx37-p27 axis arrests endothelial cell cycle to enable arterial specification |
title_full |
Shear-induced Notch-Cx37-p27 axis arrests endothelial cell cycle to enable arterial specification |
title_fullStr |
Shear-induced Notch-Cx37-p27 axis arrests endothelial cell cycle to enable arterial specification |
title_full_unstemmed |
Shear-induced Notch-Cx37-p27 axis arrests endothelial cell cycle to enable arterial specification |
title_sort |
shear-induced notch-cx37-p27 axis arrests endothelial cell cycle to enable arterial specification |
publisher |
Nature Portfolio |
publishDate |
2017 |
url |
https://doaj.org/article/db347af2168d4593b642250c5c0ab8aa |
work_keys_str_mv |
AT jennifersfang shearinducednotchcx37p27axisarrestsendothelialcellcycletoenablearterialspecification AT briangcoon shearinducednotchcx37p27axisarrestsendothelialcellcycletoenablearterialspecification AT noellegillis shearinducednotchcx37p27axisarrestsendothelialcellcycletoenablearterialspecification AT zehuachen shearinducednotchcx37p27axisarrestsendothelialcellcycletoenablearterialspecification AT jingyaoqiu shearinducednotchcx37p27axisarrestsendothelialcellcycletoenablearterialspecification AT thomaswchittenden shearinducednotchcx37p27axisarrestsendothelialcellcycletoenablearterialspecification AT janismburt shearinducednotchcx37p27axisarrestsendothelialcellcycletoenablearterialspecification AT martinaschwartz shearinducednotchcx37p27axisarrestsendothelialcellcycletoenablearterialspecification AT karenkhirschi shearinducednotchcx37p27axisarrestsendothelialcellcycletoenablearterialspecification |
_version_ |
1718386144203243520 |