Reversal of pulmonary veno-occlusive disease phenotypes by inhibition of the integrated stress response

Author:

Prabhakar AmitORCID,Kumar Rahul,Wadhwa Meetu,Ghatpande Prajakta,Zhang Jingkun,Zhao Ziwen,Lizama Carlos O.,Kharbikar Bhushan N.ORCID,Gräf StefanORCID,Treacy Carmen M.,Morrell Nicholas W.ORCID,Graham Brian B.,Lagna Giorgio,Hata AkikoORCID

Abstract

AbstractPulmonary veno-occlusive disease (PVOD) is a rare form of pulmonary hypertension arising from EIF2AK4 gene mutations or mitomycin C (MMC) administration. The lack of effective PVOD therapies is compounded by a limited understanding of the mechanisms driving the vascular remodeling in PVOD. We show that the administration of MMC in rats mediates the activation of protein kinase R (PKR) and the integrated stress response (ISR), which lead to the release of the endothelial adhesion molecule VE-Cadherin in the complex with Rad51 to the circulation, disruption of endothelial barrier, and vascular remodeling. Pharmacological inhibition of PKR or ISR attenuates the depletion of VE-Cadherin, elevation of vascular permeability, and vascular remodeling instigated by MMC, suggesting potential clinical intervention for PVOD. Finally, the severity of PVOD phenotypes was increased by a heterozygousBMPR2mutation that truncates the carboxyl tail of BMPR2, underscoring the role of deregulated BMP signal in the development of PVOD.

Publisher

Cold Spring Harbor Laboratory

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