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HIF2α signaling inhibits adherens junctional disruption in acute lung injury
Haixia Gong, Jalees Rehman, Haiyang Tang, Kishore Wary, Manish Mittal, Pallavi Chatturvedi, Youyang Zhao, Yulia A. Komorova, Stephen M. Vogel, Asrar B. Malik
Haixia Gong, Jalees Rehman, Haiyang Tang, Kishore Wary, Manish Mittal, Pallavi Chatturvedi, Youyang Zhao, Yulia A. Komorova, Stephen M. Vogel, Asrar B. Malik
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Research Article

HIF2α signaling inhibits adherens junctional disruption in acute lung injury

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Abstract

Vascular endothelial barrier dysfunction underlies diseases such as acute respiratory distress syndrome (ARDS), characterized by edema and inflammatory cell infiltration. The transcription factor HIF2α is highly expressed in vascular endothelial cells (ECs) and may regulate endothelial barrier function. Here, we analyzed promoter sequences of genes encoding proteins that regulate adherens junction (AJ) integrity and determined that vascular endothelial protein tyrosine phosphatase (VE-PTP) is a HIF2α target. HIF2α-induced VE-PTP expression enhanced dephosphorylation of VE-cadherin, which reduced VE-cadherin endocytosis and thereby augmented AJ integrity and endothelial barrier function. Mice harboring an EC-specific deletion of Hif2a exhibited decreased VE-PTP expression and increased VE-cadherin phosphorylation, resulting in defective AJs. Mice lacking HIF2α in ECs had increased lung vascular permeability and water content, both of which were further exacerbated by endotoxin-mediated injury. Treatment of these mice with Fg4497, a prolyl hydroxylase domain 2 (PHD2) inhibitor, activated HIF2α-mediated transcription in a hypoxia-independent manner. HIF2α activation increased VE-PTP expression, decreased VE-cadherin phosphorylation, promoted AJ integrity, and prevented the loss of endothelial barrier function. These findings demonstrate that HIF2α enhances endothelial barrier integrity, in part through VE-PTP expression and the resultant VE-cadherin dephosphorylation-mediated assembly of AJs. Moreover, activation of HIF2α/VE-PTP signaling via PHD2 inhibition has the potential to prevent the formation of leaky vessels and edema in inflammatory diseases such as ARDS.

Authors

Haixia Gong, Jalees Rehman, Haiyang Tang, Kishore Wary, Manish Mittal, Pallavi Chatturvedi, Youyang Zhao, Yulia A. Komorova, Stephen M. Vogel, Asrar B. Malik

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Figure 5

PHD2 depletion enhances the integrity of the endothelial barrier and increases VE-PTP expression.

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PHD2 depletion enhances the integrity of the endothelial barrier and inc...
(A) HLMVECs were infected with control or lentiviral PHD2 siRNA, and WB was performed to determine the expression of VE-cadherin, VE-PTP, PHD2, and HIF2α as well as the extent of VE-cadherin tyrosine phosphorylation at Y658, Y685, and Y731. (B and C) Quantification of VE-PTP (B) and VE-cadherin (C) protein expression following PHD2 depletion (n = 3). (D) HLMVECs were infected with control or lentiviral PHD1 and PHD3 siRNAs, and WBs were used to compare expression levels of VE-cadherin, VE-PTP, PHD, and PHD3. (E) HLMVECs infected with control or lentiviral PHD2 siRNA were immunostained and analyzed by confocal microscopy. (F) Quantification of AJ thickness in random fields (n = 25–35 cells). (G) Serum-starved confluent HLMVECs infected with control or lentiviral PHD2 siRNA were challenged with 1 μg/ml LPS, and TER was monitored to determine AJ disassembly. TER values of each monolayer were normalized to baseline values (n = 4/group). ***P < 0.005, ****P < 0.001 by Student’s t test.

Copyright © 2026 American Society for Clinical Investigation
ISSN: 0021-9738 (print), 1558-8238 (online)

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