Endothelial ERK1/2 signaling maintains integrity of the quiescent endothelium

To define the role of ERK1/2 signaling in the quiescent endothelium, we induced endothelial knockout in adult mice. This resulted in a rapid onset of hypertension, a decrease in eNOS expression, and an increase in endothelin-1 plasma levels, with all mice dying within 5 wk. Immunostaining and endoth...

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Published inThe Journal of experimental medicine Vol. 216; no. 8; pp. 1874 - 1890
Main Authors Ricard, Nicolas, Scott, Rizaldy P, Booth, Carmen J, Velazquez, Heino, Cilfone, Nicholas A, Baylon, Javier L, Gulcher, Jeffrey R, Quaggin, Susan E, Chittenden, Thomas W, Simons, Michael
Format Journal Article
LanguageEnglish
Published United States Rockefeller University Press 05.08.2019
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Summary:To define the role of ERK1/2 signaling in the quiescent endothelium, we induced endothelial knockout in adult mice. This resulted in a rapid onset of hypertension, a decrease in eNOS expression, and an increase in endothelin-1 plasma levels, with all mice dying within 5 wk. Immunostaining and endothelial fate mapping showed a robust increase in TGFβ signaling leading to widespread endothelial-to-mesenchymal transition (EndMT). Fibrosis affecting the cardiac conduction system was responsible for the universal lethality in these mice. Other findings included renal endotheliosis, loss of fenestrated endothelia in endocrine organs, and hemorrhages. An ensemble computational intelligence strategy, comprising deep learning and probabilistic programing of RNA-seq data, causally linked the loss of ERK1/2 in HUVECs in vitro to activation of TGFβ signaling, EndMT, suppression of eNOS, and induction of endothelin-1 expression. All in silico predictions were verified in vitro and in vivo. In summary, these data establish the key role played by ERK1/2 signaling in the maintenance of vascular normalcy.
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T.W. Chittenden and M. Simons contributed equally to this paper.
ISSN:0022-1007
1540-9538
DOI:10.1084/jem.20182151