Cargando…

Single-cell RNA sequencing reveals that BMPR2 mutation regulates right ventricular function via ID genes

BACKGROUND: Mutations in bone morphogenetic protein type II receptor (BMPR2) have been found in patients with congenital heart disease-associated pulmonary arterial hypertension (CHD-PAH). Our study aimed to clarify whether deficient BMPR2 signalling acts through downstream effectors, inhibitors of...

Descripción completa

Detalles Bibliográficos
Autores principales: Du, Mingxia, Jiang, Haibin, Liu, Hongxian, Zhao, Xin, Zhou, Yu, Zhou, Fang, Piao, Chunmei, Xu, Guoqiang, Ma, Feng, Wang, Jianan, Perros, Frederic, Morrell, Nicholas W., Gu, Hong, Yang, Jun
Formato: Online Artículo Texto
Lenguaje:English
Publicado: European Respiratory Society 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9260124/
https://www.ncbi.nlm.nih.gov/pubmed/34857612
http://dx.doi.org/10.1183/13993003.00327-2021
_version_ 1784741950215159808
author Du, Mingxia
Jiang, Haibin
Liu, Hongxian
Zhao, Xin
Zhou, Yu
Zhou, Fang
Piao, Chunmei
Xu, Guoqiang
Ma, Feng
Wang, Jianan
Perros, Frederic
Morrell, Nicholas W.
Gu, Hong
Yang, Jun
author_facet Du, Mingxia
Jiang, Haibin
Liu, Hongxian
Zhao, Xin
Zhou, Yu
Zhou, Fang
Piao, Chunmei
Xu, Guoqiang
Ma, Feng
Wang, Jianan
Perros, Frederic
Morrell, Nicholas W.
Gu, Hong
Yang, Jun
author_sort Du, Mingxia
collection PubMed
description BACKGROUND: Mutations in bone morphogenetic protein type II receptor (BMPR2) have been found in patients with congenital heart disease-associated pulmonary arterial hypertension (CHD-PAH). Our study aimed to clarify whether deficient BMPR2 signalling acts through downstream effectors, inhibitors of DNA-binding proteins (IDs) during heart development to contribute to the progress of PAH in CHD patients. METHODS: To confirm that IDs are downstream effectors of BMPR2 signalling in cardiac mesoderm progenitors (CMPs) and contribute to PAH, we generated cardiomyocyte-specific Id 1/3 knockout mice (Ids cDKO), and 12 out of 25 developed mild PAH with altered haemodynamic indices and pulmonary vascular remodelling. Moreover, we generated ID1 and ID3 double-knockout (IDs KO) human embryonic stem cells that recapitulated the BMPR2 signalling deficiency of CHD-PAH induced pluripotent stem cells (iPSCs). RESULTS: Cardiomyocytes differentiated from iPSCs derived from CHD-PAH patients with BMP receptor mutations exhibited dysfunctional cardiac differentiation and reduced calcium (Ca(2+)) transients, as evidenced by confocal microscopy experiments. Smad1/5 phosphorylation and ID1 and ID3 expression were reduced in CHD-PAH iPSCs and in Bmpr2(+/–) rat right ventricles. Moreover, ultrasound revealed that 33% of Ids cDKO mice had detectable defects in their ventricular septum and pulmonary regurgitation. Cardiomyocytes isolated from mouse right ventricles also showed reduced Ca(2+) transients and shortened sarcomeres. Single-cell RNA sequencing analysis revealed impaired differentiation of CMPs and downregulated USP9X expression in IDs KO cells compared with wild-type cells. CONCLUSION: We found that BMPR2 signals through IDs and USP9X to regulate cardiac differentiation, and the loss of ID1 and ID3 expression contributes to cardiomyocyte dysfunction in CHD-PAH patients with BMPR2 mutations.
format Online
Article
Text
id pubmed-9260124
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher European Respiratory Society
record_format MEDLINE/PubMed
spelling pubmed-92601242022-07-08 Single-cell RNA sequencing reveals that BMPR2 mutation regulates right ventricular function via ID genes Du, Mingxia Jiang, Haibin Liu, Hongxian Zhao, Xin Zhou, Yu Zhou, Fang Piao, Chunmei Xu, Guoqiang Ma, Feng Wang, Jianan Perros, Frederic Morrell, Nicholas W. Gu, Hong Yang, Jun Eur Respir J Original Research Articles BACKGROUND: Mutations in bone morphogenetic protein type II receptor (BMPR2) have been found in patients with congenital heart disease-associated pulmonary arterial hypertension (CHD-PAH). Our study aimed to clarify whether deficient BMPR2 signalling acts through downstream effectors, inhibitors of DNA-binding proteins (IDs) during heart development to contribute to the progress of PAH in CHD patients. METHODS: To confirm that IDs are downstream effectors of BMPR2 signalling in cardiac mesoderm progenitors (CMPs) and contribute to PAH, we generated cardiomyocyte-specific Id 1/3 knockout mice (Ids cDKO), and 12 out of 25 developed mild PAH with altered haemodynamic indices and pulmonary vascular remodelling. Moreover, we generated ID1 and ID3 double-knockout (IDs KO) human embryonic stem cells that recapitulated the BMPR2 signalling deficiency of CHD-PAH induced pluripotent stem cells (iPSCs). RESULTS: Cardiomyocytes differentiated from iPSCs derived from CHD-PAH patients with BMP receptor mutations exhibited dysfunctional cardiac differentiation and reduced calcium (Ca(2+)) transients, as evidenced by confocal microscopy experiments. Smad1/5 phosphorylation and ID1 and ID3 expression were reduced in CHD-PAH iPSCs and in Bmpr2(+/–) rat right ventricles. Moreover, ultrasound revealed that 33% of Ids cDKO mice had detectable defects in their ventricular septum and pulmonary regurgitation. Cardiomyocytes isolated from mouse right ventricles also showed reduced Ca(2+) transients and shortened sarcomeres. Single-cell RNA sequencing analysis revealed impaired differentiation of CMPs and downregulated USP9X expression in IDs KO cells compared with wild-type cells. CONCLUSION: We found that BMPR2 signals through IDs and USP9X to regulate cardiac differentiation, and the loss of ID1 and ID3 expression contributes to cardiomyocyte dysfunction in CHD-PAH patients with BMPR2 mutations. European Respiratory Society 2022-07-07 /pmc/articles/PMC9260124/ /pubmed/34857612 http://dx.doi.org/10.1183/13993003.00327-2021 Text en Copyright ©The authors 2022. https://creativecommons.org/licenses/by-nc/4.0/This version is distributed under the terms of the Creative Commons Attribution Non-Commercial Licence 4.0. For commercial reproduction rights and permissions contact permissions@ersnet.org (mailto:permissions@ersnet.org)
spellingShingle Original Research Articles
Du, Mingxia
Jiang, Haibin
Liu, Hongxian
Zhao, Xin
Zhou, Yu
Zhou, Fang
Piao, Chunmei
Xu, Guoqiang
Ma, Feng
Wang, Jianan
Perros, Frederic
Morrell, Nicholas W.
Gu, Hong
Yang, Jun
Single-cell RNA sequencing reveals that BMPR2 mutation regulates right ventricular function via ID genes
title Single-cell RNA sequencing reveals that BMPR2 mutation regulates right ventricular function via ID genes
title_full Single-cell RNA sequencing reveals that BMPR2 mutation regulates right ventricular function via ID genes
title_fullStr Single-cell RNA sequencing reveals that BMPR2 mutation regulates right ventricular function via ID genes
title_full_unstemmed Single-cell RNA sequencing reveals that BMPR2 mutation regulates right ventricular function via ID genes
title_short Single-cell RNA sequencing reveals that BMPR2 mutation regulates right ventricular function via ID genes
title_sort single-cell rna sequencing reveals that bmpr2 mutation regulates right ventricular function via id genes
topic Original Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9260124/
https://www.ncbi.nlm.nih.gov/pubmed/34857612
http://dx.doi.org/10.1183/13993003.00327-2021
work_keys_str_mv AT dumingxia singlecellrnasequencingrevealsthatbmpr2mutationregulatesrightventricularfunctionviaidgenes
AT jianghaibin singlecellrnasequencingrevealsthatbmpr2mutationregulatesrightventricularfunctionviaidgenes
AT liuhongxian singlecellrnasequencingrevealsthatbmpr2mutationregulatesrightventricularfunctionviaidgenes
AT zhaoxin singlecellrnasequencingrevealsthatbmpr2mutationregulatesrightventricularfunctionviaidgenes
AT zhouyu singlecellrnasequencingrevealsthatbmpr2mutationregulatesrightventricularfunctionviaidgenes
AT zhoufang singlecellrnasequencingrevealsthatbmpr2mutationregulatesrightventricularfunctionviaidgenes
AT piaochunmei singlecellrnasequencingrevealsthatbmpr2mutationregulatesrightventricularfunctionviaidgenes
AT xuguoqiang singlecellrnasequencingrevealsthatbmpr2mutationregulatesrightventricularfunctionviaidgenes
AT mafeng singlecellrnasequencingrevealsthatbmpr2mutationregulatesrightventricularfunctionviaidgenes
AT wangjianan singlecellrnasequencingrevealsthatbmpr2mutationregulatesrightventricularfunctionviaidgenes
AT perrosfrederic singlecellrnasequencingrevealsthatbmpr2mutationregulatesrightventricularfunctionviaidgenes
AT morrellnicholasw singlecellrnasequencingrevealsthatbmpr2mutationregulatesrightventricularfunctionviaidgenes
AT guhong singlecellrnasequencingrevealsthatbmpr2mutationregulatesrightventricularfunctionviaidgenes
AT yangjun singlecellrnasequencingrevealsthatbmpr2mutationregulatesrightventricularfunctionviaidgenes