Jagged/Notch proteins promote endothelial‐mesenchymal transition‐mediated pulmonary arterial hypertension via upregulation of the expression of GATAs

Author:

Lin Kun‐Chen1,Yeh Jui‐Ning2,Shao Pei‐Lin3,Chiang John Y.45,Sung Pei‐Hsun678,Huang Chi‐Ruei67,Chen Yi‐Ling68,Yip Hon‐Kan36789ORCID,Guo Jun2

Affiliation:

1. Department of Anesthesiology Kaohsiung Chang Gung Memorial Hospital and Chang Gung University College of Medicine Kaohsiung Taiwan

2. Department of Cardiology The First Affiliated Hospital of Jinan University Guangzhou China

3. Department of Nursing Asia University Kaohsiung Taiwan

4. Department of Computer Science and Engineering National Sun Yat‐Sen University Kaohsiung Taiwan

5. Department of Healthcare Administration and Medical Informatics Kaohsiung Medical University Kaohsiung Taiwan

6. Division of Cardiology, Department of Internal Medicine Kaohsiung Chang Gung Memorial Hospital and Chang Gung University College of Medicine Kaohsiung Taiwan

7. Center for Shockwave Medicine and Tissue Engineering Kaohsiung Chang Gung Memorial Hospital Kaohsiung Taiwan

8. Institute for Translational Research in Biomedicine Kaohsiung Chang Gung Memorial Hospital Kaohsiung Taiwan

9. Department of Medical Research, China Medical University Hospital China Medical University Taichung Taiwan

Abstract

AbstractThis study tested the hypothesis that Jagged2/Notches promoted the endothelial‐mesenchymal transition (endMT)‐mediated pulmonary arterial hypertension (PAH) (i.e. induction by monocrotaline [MCT]/63 mg/kg/subcutaneous injection) through increasing the expression of GATA‐binding factors which were inhibited by propylthiouracil (PTU) (i.e. 0.1% in water for daily drinking since Day 5 after PAH induction) in rodent. As compared with the control (i.e. HUVECs), the protein expressions of GATAs (3/4/6) and endMT markers (Snail/Zeb1/N‐cadherin/vimentin/fibronectin/α‐SMA/p‐Smad2) were significantly reduced, whereas the endothelial‐phenotype markers (CD31/E‐cadherin) were significantly increased in silenced JAG2 gene or in silenced GATA3 gene of HUVECs (all p < 0.001). As compared with the control, the protein expressions of intercellular signallings (GATAs [3/4/6], Jagged1/2, notch1/2 and Snail/Zeb1/N‐cadherin/vimentin/fibronectin/α‐SMA/p‐Smad2) were significantly upregulated in TGF‐ß/monocrotaline‐treated HUVECs that were significantly reversed by PTU treatment (all p < 0.001). By Day 42, the results of animal study demonstrated that the right‐ventricular systolic‐blood‐pressure (RVSBP), RV weight (RVW) and lung injury/fibrotic scores were significantly increased in MCT group than sham‐control (SC) that were reversed in MCT + PTU groups, whereas arterial oxygen saturation (%) and vasorelaxation/nitric oxide production of PA exhibited an opposite pattern of RVW among the groups (all p < 0.0001). The protein expressions of hypertrophic (ß‐MHC)/pressure‐overload (BNP)/oxidative‐stress (NOX‐1/NOX‐2) biomarkers in RV and the protein expressions of intercellular signalling (GATAs3/4/6, Jagged1/2, notch1/2) and endMT markers (Snail/Zeb1/N‐cadherin/vimentin/fibronectin/TGF‐ß/α‐SMA/p‐Smad2) in lung parenchyma displayed an identical pattern of RVW among the groups (all p < 0.0001). Jagged‐Notch‐GATAs signalling, endMT markers and RVSBP that were increased in PAH were suppressed by PTU.

Funder

Chang Gung University

Publisher

Wiley

Subject

Cell Biology,Molecular Medicine

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