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Citations to this article

RASA1 functions in EPHB4 signaling pathway to suppress endothelial mTORC1 activity
Jun Kawasaki, … , Steven J. Fishman, Joanne Chan
Jun Kawasaki, … , Steven J. Fishman, Joanne Chan
Published May 16, 2014
Citation Information: J Clin Invest. 2014;124(6):2774-2784. https://doi.org/10.1172/JCI67084.
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Research Article Vascular biology Article has an altmetric score of 21

RASA1 functions in EPHB4 signaling pathway to suppress endothelial mTORC1 activity

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Abstract

Vascular malformations are linked to mutations in RAS p21 protein activator 1 (RASA1, also known as p120RasGAP); however, due to the global expression of this gene, it is unclear how these mutations specifically affect the vasculature. Here, we tested the hypothesis that RASA1 performs a critical effector function downstream of the endothelial receptor EPHB4. In zebrafish models, we found that either RASA1 or EPHB4 deficiency induced strikingly similar abnormalities in blood vessel formation and function. Expression of WT EPHB4 receptor or engineered receptors with altered RASA1 binding revealed that the ability of EPHB4 to recruit RASA1 is required to restore blood flow in EPHB4-deficient animals. Analysis of EPHB4-deficient zebrafish tissue lysates revealed that mTORC1 is robustly overactivated, and pharmacological inhibition of mTORC1 in these animals rescued both vessel structure and function. Furthermore, overexpression of mTORC1 in endothelial cells exacerbated vascular phenotypes in animals with reduced EPHB4 or RASA1, suggesting a functional EPHB4/RASA1/mTORC1 signaling axis in endothelial cells. Tissue samples from patients with arteriovenous malformations displayed strong endothelial phospho-S6 staining, indicating increased mTORC1 activity. These results indicate that deregulation of EPHB4/RASA1/mTORC1 signaling in endothelial cells promotes vascular malformation and suggest that mTORC1 inhibitors, many of which are approved for the treatment of certain cancers, should be further explored as a potential strategy to treat patients with vascular malformations.

Authors

Jun Kawasaki, Sandrine Aegerter, R. Dawn Fevurly, Akiko Mammoto, Tadanori Mammoto, Mustafa Sahin, John D. Mably, Steven J. Fishman, Joanne Chan

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Total citations by year

Year: 2024 2023 2022 2021 2020 2019 2018 2017 2016 2015 2014 Total
Citations: 2 6 6 4 3 3 4 1 1 3 2 35
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Citations to this article (35)

Title and authors Publication Year
Somatic RIT1 indels identified in arteriovenous malformations hyperactivate RAS-MAPK signaling and are amenable to MEK inhibition
Friedrich Kapp, Farhad Bazgir, Nagi Mahammadzade, Erik Vassella, Yvonne Döring, Annegret Holm, Axel Karow, Caroline Seebauer, Natascha Platz Batista da Silva, Walter Wohlgemuth, Pia Kröning, Charlotte Niemeyer, Denny Schanze, Martin Zenker, Whitney Eng, Mohammad Ahmadian, Iris Baumgartner, Jochen Rössler
Angiogenesis 2024
Recent advances of the Ephrin and Eph family in cardiovascular development and pathologies
Zhu Y, Su SA, Shen J, Ma H, Le J, Xie Y, Xiang M
iScience 2024
Shaping the brain vasculature in development and disease in the single-cell era
Wälchli T, Bisschop J, Carmeliet P, Zadeh G, Monnier PP, De Bock K, Radovanovic I
Nature reviews. Neuroscience 2023
Diverse p120RasGAP interactions with doubly phosphorylated partners EphB4, p190RhoGAP, and Dok1
Vish KJ, Stiegler AL, Boggon TJ
The Journal of biological chemistry 2023
Understanding the pathogenesis of brain arteriovenous malformation: genetic variations, epigenetics, signaling pathways, and immune inflammation.
Wang S, Deng X, Wu Y, Wu Y, Zhou S, Yang J, Huang Y
Human Genetics 2023
Transluminal Pillars—Their Origin and Role in the Remodelling of the Zebrafish Caudal Vein Plexus
Röss H, Aaldijk D, Vladymyrov M, Odriozola A, Djonov V
International journal of molecular sciences 2023
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Y Zhang, Y Li, Q Wang, B Su, H Xu, Y Sun, P Sun, R Li, X Peng, J Cai
Oncology reports 2020
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DR Stewart, GJ Clark
Journal of cell science 2020
The median vein of prosencephalon of Markowski: From morphology to genetics
M Komiyama
Interventional Neuroradiology 2020
RASA1-dependent cellular export of collagen IV controls blood and lymphatic vascular development
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Journal of Clinical Investigation 2019
EphrinB2-EphB4-RASA1 Signaling in Human Cerebrovascular Development and Disease
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