In pulmonary arterial hypertension, reduced BMPR2 promotes rndothelial-to-mesenchymal transition via HMGA1 and its target slug
File(s)Hopper et al 021216.pdf (11.84 MB)
Accepted version
Author(s)
Type
Journal Article
Abstract
Background—We previously reported high-throughput RNA sequencing analyses that identified heightened expression of the chromatin architectural factor High Mobility Group AT-hook 1 (HMGA1) in pulmonary arterial endothelial cells (PAECs) from patients who had idiopathic pulmonary arterial hypertension (PAH) in comparison with controls. Because HMGA1 promotes epithelial-to-mesenchymal transition in cancer, we hypothesized that increased HMGA1 could induce transition of PAECs to a smooth muscle (SM)–like mesenchymal phenotype (endothelial-to-mesenchymal transition), explaining both dysregulation of PAEC function and possible cellular contribution to the occlusive remodeling that characterizes advanced idiopathic PAH.
Methods and Results—We documented increased HMGA1 in PAECs cultured from idiopathic PAH versus donor control lungs. Confocal microscopy of lung explants localized the increase in HMGA1 consistently to pulmonary arterial endothelium, and identified many cells double-positive for HMGA1 and SM22α in occlusive and plexogenic lesions. Because decreased expression and function of bone morphogenetic protein receptor 2 (BMPR2) is observed in PAH, we reduced BMPR2 by small interfering RNA in control PAECs and documented an increase in HMGA1 protein. Consistent with transition of PAECs by HMGA1, we detected reduced platelet endothelial cell adhesion molecule 1 (CD31) and increased endothelial-to-mesenchymal transition markers, αSM actin, SM22α, calponin, phospho-vimentin, and Slug. The transition was associated with spindle SM-like morphology, and the increase in αSM actin was largely reversed by joint knockdown of BMPR2 and HMGA1 or Slug. Pulmonary endothelial cells from mice with endothelial cell–specific loss of Bmpr2 showed similar gene and protein changes.
Conclusions—Increased HMGA1 in PAECs resulting from dysfunctional BMPR2 signaling can transition endothelium to SM-like cells associated with PAH.
Methods and Results—We documented increased HMGA1 in PAECs cultured from idiopathic PAH versus donor control lungs. Confocal microscopy of lung explants localized the increase in HMGA1 consistently to pulmonary arterial endothelium, and identified many cells double-positive for HMGA1 and SM22α in occlusive and plexogenic lesions. Because decreased expression and function of bone morphogenetic protein receptor 2 (BMPR2) is observed in PAH, we reduced BMPR2 by small interfering RNA in control PAECs and documented an increase in HMGA1 protein. Consistent with transition of PAECs by HMGA1, we detected reduced platelet endothelial cell adhesion molecule 1 (CD31) and increased endothelial-to-mesenchymal transition markers, αSM actin, SM22α, calponin, phospho-vimentin, and Slug. The transition was associated with spindle SM-like morphology, and the increase in αSM actin was largely reversed by joint knockdown of BMPR2 and HMGA1 or Slug. Pulmonary endothelial cells from mice with endothelial cell–specific loss of Bmpr2 showed similar gene and protein changes.
Conclusions—Increased HMGA1 in PAECs resulting from dysfunctional BMPR2 signaling can transition endothelium to SM-like cells associated with PAH.
Date Issued
2016-04-04
Date Acceptance
2016-03-11
Citation
Circulation, 2016, 133, pp.1783-1794
ISSN
0009-7322
Publisher
American Heart Association
Start Page
1783
End Page
1794
Journal / Book Title
Circulation
Volume
133
Copyright Statement
© 2016 by American Heart Association, Inc.
Identifier
PII: CIRCULATIONAHA.115.020617
Subjects
Science & Technology
Life Sciences & Biomedicine
Cardiac & Cardiovascular Systems
Peripheral Vascular Disease
Cardiovascular System & Cardiology
endothelial-to-mesenchymal transition
HMGA1 protein
hypertension
pulmonary
TRANSCRIPTION FACTOR SNAIL
GENE-EXPRESSION
CELL SURVIVAL
MICE
PATHOGENESIS
DYSFUNCTION
MUTATIONS
FIBROSIS
SIGNALS
CATENIN
HMGA1 protein
endothelial-to-mesenchymal transition
hypertension, pulmonary
Adolescent
Adult
Animals
Bone Morphogenetic Protein Receptors, Type II
Cells, Cultured
Child
Endothelium, Vascular
Epithelial-Mesenchymal Transition
Female
HMGA1a Protein
Humans
Hypertension, Pulmonary
Infant
Male
Mice
Mice, Transgenic
Middle Aged
Myocytes, Smooth Muscle
Snail Family Transcription Factors
Young Adult
Endothelium, Vascular
Cells, Cultured
Myocytes, Smooth Muscle
Animals
Mice, Transgenic
Humans
Mice
Hypertension, Pulmonary
HMGA1a Protein
Adolescent
Adult
Middle Aged
Child
Infant
Female
Male
Bone Morphogenetic Protein Receptors, Type II
Young Adult
Epithelial-Mesenchymal Transition
Snail Family Transcription Factors
Cardiovascular System & Hematology
1102 Cardiorespiratory Medicine and Haematology
1103 Clinical Sciences
1117 Public Health and Health Services
Publication Status
Published
Date Publish Online
2016-04-04