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Citations to this article

SMAD4 maintains the fluid shear stress set point to protect against arterial-venous malformations
Kuheli Banerjee, … , Martin A. Schwartz, Roxana Ola
Kuheli Banerjee, … , Martin A. Schwartz, Roxana Ola
Published July 25, 2023
Citation Information: J Clin Invest. 2023;133(18):e168352. https://doi.org/10.1172/JCI168352.
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Research Article Vascular biology Article has an altmetric score of 1

SMAD4 maintains the fluid shear stress set point to protect against arterial-venous malformations

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Abstract

Vascular networks form, remodel, and mature under the influence of both fluid shear stress (FSS) and soluble factors. Physiological FSS promotes and maintains vascular stability via synergy with bone morphogenic proteins 9 and 10 (BMP9 and BMP10). Conversely, mutation of the BMP receptors activin-like kinase 1 (ALK1), endoglin (ENG), or the downstream effector, SMAD family member 4 (SMAD4) leads to hereditary hemorrhagic telangiectasia (HHT), characterized by fragile and leaky arterial-venous malformations (AVMs). How endothelial cells (ECs) integrate FSS and BMP signals in vascular development and homeostasis and how mutations give rise to vascular malformations is not well understood. Here, we aimed to elucidate the mechanism of synergy between FSS and SMAD signaling in vascular stability and how disruption of this synergy leads to AVMs. We found that loss of Smad4 increased the sensitivity of ECs to flow by lowering the FSS set point, with resulting AVMs exhibiting features of excessive flow-mediated morphological responses. Mechanistically, loss of SMAD4 disinhibits flow-mediated KLF4-TIE2-PI3K/Akt signaling, leading to cell cycle progression–mediated loss of arterial identity due to KLF4-mediated repression of cyclin dependent Kinase (CDK) inhibitors CDKN2A and CDKN2B. Thus, AVMs caused by Smad4 deletion are characterized by chronic high flow remodeling with excessive EC proliferation and loss of arterial identity as triggering events.

Authors

Kuheli Banerjee, Yanzhu Lin, Johannes Gahn, Julio Cordero, Purnima Gupta, Islam Mohamed, Mariona Graupera, Gergana Dobreva, Martin A. Schwartz, Roxana Ola

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Total citations by year

Year: 2025 2024 2023 Total
Citations: 6 13 1 20
Citation information
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Citations to this article (20)

Title and authors Publication Year
Divergent endothelial mechanisms drive arteriovenous malformations in Alk1 and SMAD4 loss-of-function
Oppenheim O, Giese W, Park H, Baumann E, Ivanov A, Beule D, Eichmann A, Gerhardt H
bioRxiv 2025
Dysfunctional mechanotransduction regulates the progression of PIK3CA-driven vascular malformations
Aw WY, Sawhney A, Rathod M, Whitworth CP, Doherty EL, Madden E, Lu J, Westphal K, Stack R, Polacheck WJ
APL Bioengineering 2025
Silencing KRIT1 Partially Reverses the Effects of Disturbed Flow on the Endothelial Cell Transcriptome
Meecham A, McCurdy S, Frias-Anaya E, Li W, Gallego-Gutierrez H, Ngyuen P, Li JY, Chien S, Shyy JY, Ginsberg MH, Lopez-Ramirez MA
bioRxiv 2025
Tie-2 regulates endothelial morphological responses to shear stress by FOXO1-triggered autophagy
Ghanbarpour Houshangi M, Shirakura K, Vestweber D
PLOS One 2025
Silencing KRIT1 Partially Reverses the Effects of Disturbed Flow on the Endothelial Cell Transcriptome
Meecham A, McCurdy S, Frias-Anaya E, Li W, Gallego-Gutierrez H, Nguyen P, Li YS, Chien S, Shyy JY, Ginsberg MH, Lopez-Ramirez MA
International Journal of Molecular Sciences 2025
Fluid Shear Stress-Regulated Vascular Remodeling: Past, Present, and Future.
Deng H, Eichmann A, Schwartz MA
Arteriosclerosis, thrombosis, and vascular biology 2025
Hereditary hemorrhagic telangiectasia : from signaling insights to therapeutic advances
Tala Al Tabosh, Mohammad Al Tarrass, Laura Tourvieilhe, Alexandre Guilhem, Sophie Dupuis-Girod, Sabine Bailly
Journal of Clinical Investigation 2024
Influence of shear stress on dysregulated signaling in vascular anomalies: pathophysiological PIK3CA signaling in vascular malformations
Salim Abdelilah-Seyfried1* and Roxana Ola2*
Journal of Clinical Investigation 2024
Shear Stress and Sub-Femtomolar Levels of Ligand Synergize to Activate ALK1 Signaling in Endothelial Cells.
Cheng YW, Anzell AR, Morosky SA, Schwartze TA, Hinck CS, Hinck AP, Roman BL, Davidson LA
Cells 2024
Large-scale phosphoproteomics reveals activation of the MAPK/GADD45β/P38 axis and cell cycle inhibition in response to BMP9 and BMP10 stimulation in endothelial cells
Al Tarrass M, Belmudes L, Koça D, Azemard V, Liu H, Al Tabosh T, Ciais D, Desroches-Castan A, Battail C, Couté Y, Bouvard C, Bailly S
Cell communication and signaling : CCS 2024
Blood flow regulates acvrl1 transcription via ligand-dependent Alk1 activity.
Anzell AR, Kunz AB, Donovan JP, Tran TG, Lu X, Young S, Roman BL
Angiogenesis 2024
BMP10 accelerated spinal astrocytic activation in neuropathic pain via ALK2/smad1/5/8 signaling
Bian J, Luo M, Tian Y, Zhang X, Zhang B, Yin L, Zhang Y
Frontiers in Pharmacology 2024
Dysfunctional mechanotransduction regulates the progression of PIK3CA-driven vascular malformations
Aw WY, Sawhney A, Rathod M, Whitworth CP, Doherty EL, Madden E, Lu J, Westphal K, Stack R, Polacheck WJ
bioRxiv 2024
Inhibition of endothelial cell proliferation as a potential therapeutic approach in hereditary hemorrhagic telangectasia.
Ricard N, Bailly S
Nature cardiovascular research 2024
CDK6-mediated endothelial cell cycle acceleration drives arteriovenous malformations in hereditary hemorrhagic telangiectasia.
Dinakaran S, Qutaina S, Zhao H, Tang Y, Wang Z, Ruiz S, Nomura-Kitabayashi A, Metz CN, Arthur HM, Meadows SM, Blanc L, Faughnan ME, Marambaud P
Nature cardiovascular research 2024
A non-genetic model of vascular shunts informs on the cellular mechanisms of formation and resolution of arteriovenous malformations
Ouarné M, Pena A, Ramalho D, Conchinha NV, Costa T, Enjalbert R, Figueiredo AM, Saraiva MP, Carvalho Y, Bernabeu MO, Henao Misikova L, Oh SP, Franco CA
Cardiovascular Research 2024
Alk1/Endoglin signaling restricts vein cell size increases in response to hemodynamic cues
Diwan Z, Kang J, Tsztoo E, Siekmann AF
Angiogenesis 2024
Genetic and pharmacological targeting of mTORC1 in mouse models of arteriovenous malformation expose non-cell autonomous signalling in HHT
Queiro-Palou A, Jin Y, Jakobsson L
Angiogenesis 2024
Arterial-Lymphatic-Like Endothelial Cells Appear in Hereditary Hemorrhagic Telangiectasia 2 and Contribute to Vascular Leakage and Arteriovenous Malformations
Yang Y, Wu X, Zhao Y, Zhang D, Zhang L, Cai X, Ji J, Jing Z, Boström KI, Yao Y
Circulation 2024
Role of endothelial PDGFB in arterio-venous malformations pathogenesis.
Lin Y, Gahn J, Banerjee K, Dobreva G, Singhal M, Dubrac A, Ola R
Angiogenesis 2023

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