Cargando…

PROX1 Inhibits PDGF-B Expression to Prevent Myxomatous Degeneration of Heart Valves

BACKGROUND: Cardiac valve disease is observed in 2.5% of the general population and 10% of the elderly people. Effective pharmacological treatments are currently not available, and patients with severe cardiac valve disease require surgery. PROX1 (prospero-related homeobox transcription factor 1) an...

Descripción completa

Detalles Bibliográficos
Autores principales: Ho, Yen-Chun, Geng, Xin, O’Donnell, Anna, Ibarrola, Jaime, Fernandez-Celis, Amaya, Varshney, Rohan, Subramani, Kumar, Azartash-Namin, Zheila J., Kim, Jang, Silasi, Robert, Wylie-Sears, Jill, Alvandi, Zahra, Chen, Lijuan, Cha, Boksik, Chen, Hong, Xia, Lijun, Zhou, Bin, Lupu, Florea, Burkhart, Harold M., Aikawa, Elena, Olson, Lorin E., Ahamed, Jasimuddin, López-Andrés, Natalia, Bischoff, Joyce, Yutzey, Katherine E., Srinivasan, R. Sathish
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Lippincott Williams & Wilkins 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10487359/
https://www.ncbi.nlm.nih.gov/pubmed/37555328
http://dx.doi.org/10.1161/CIRCRESAHA.123.323027
_version_ 1785103220202274816
author Ho, Yen-Chun
Geng, Xin
O’Donnell, Anna
Ibarrola, Jaime
Fernandez-Celis, Amaya
Varshney, Rohan
Subramani, Kumar
Azartash-Namin, Zheila J.
Kim, Jang
Silasi, Robert
Wylie-Sears, Jill
Alvandi, Zahra
Chen, Lijuan
Cha, Boksik
Chen, Hong
Xia, Lijun
Zhou, Bin
Lupu, Florea
Burkhart, Harold M.
Aikawa, Elena
Olson, Lorin E.
Ahamed, Jasimuddin
López-Andrés, Natalia
Bischoff, Joyce
Yutzey, Katherine E.
Srinivasan, R. Sathish
author_facet Ho, Yen-Chun
Geng, Xin
O’Donnell, Anna
Ibarrola, Jaime
Fernandez-Celis, Amaya
Varshney, Rohan
Subramani, Kumar
Azartash-Namin, Zheila J.
Kim, Jang
Silasi, Robert
Wylie-Sears, Jill
Alvandi, Zahra
Chen, Lijuan
Cha, Boksik
Chen, Hong
Xia, Lijun
Zhou, Bin
Lupu, Florea
Burkhart, Harold M.
Aikawa, Elena
Olson, Lorin E.
Ahamed, Jasimuddin
López-Andrés, Natalia
Bischoff, Joyce
Yutzey, Katherine E.
Srinivasan, R. Sathish
author_sort Ho, Yen-Chun
collection PubMed
description BACKGROUND: Cardiac valve disease is observed in 2.5% of the general population and 10% of the elderly people. Effective pharmacological treatments are currently not available, and patients with severe cardiac valve disease require surgery. PROX1 (prospero-related homeobox transcription factor 1) and FOXC2 (Forkhead box C2 transcription factor) are transcription factors that are required for the development of lymphatic and venous valves. We found that PROX1 and FOXC2 are expressed in a subset of valvular endothelial cells (VECs) that are located on the downstream (fibrosa) side of cardiac valves. Whether PROX1 and FOXC2 regulate cardiac valve development and disease is not known. METHODS: We used histology, electron microscopy, and echocardiography to investigate the structure and functioning of heart valves from Prox1(ΔVEC) mice in which Prox1 was conditionally deleted from VECs. Isolated valve endothelial cells and valve interstitial cells were used to identify the molecular mechanisms in vitro, which were tested in vivo by RNAScope, additional mouse models, and pharmacological approaches. The significance of our findings was tested by evaluation of human samples of mitral valve prolapse and aortic valve insufficiency. RESULTS: Histological analysis revealed that the aortic and mitral valves of Prox1(ΔVEC) mice become progressively thick and myxomatous. Echocardiography revealed that the aortic valves of Prox1(ΔVEC) mice are stenotic. FOXC2 was downregulated and PDGF-B (platelet-derived growth factor-B) was upregulated in the VECs of Prox1(ΔVEC) mice. Conditional knockdown of FOXC2 and conditional overexpression of PDGF-B in VECs recapitulated the phenotype of Prox1(ΔVEC) mice. PDGF-B was also increased in mice lacking FOXC2 and in human mitral valve prolapse and insufficient aortic valve samples. Pharmacological inhibition of PDGF-B signaling with imatinib partially ameliorated the valve defects of Prox1(ΔVEC) mice. CONCLUSIONS: PROX1 antagonizes PDGF-B signaling partially via FOXC2 to maintain the extracellular matrix composition and prevent myxomatous degeneration of cardiac valves.
format Online
Article
Text
id pubmed-10487359
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher Lippincott Williams & Wilkins
record_format MEDLINE/PubMed
spelling pubmed-104873592023-09-09 PROX1 Inhibits PDGF-B Expression to Prevent Myxomatous Degeneration of Heart Valves Ho, Yen-Chun Geng, Xin O’Donnell, Anna Ibarrola, Jaime Fernandez-Celis, Amaya Varshney, Rohan Subramani, Kumar Azartash-Namin, Zheila J. Kim, Jang Silasi, Robert Wylie-Sears, Jill Alvandi, Zahra Chen, Lijuan Cha, Boksik Chen, Hong Xia, Lijun Zhou, Bin Lupu, Florea Burkhart, Harold M. Aikawa, Elena Olson, Lorin E. Ahamed, Jasimuddin López-Andrés, Natalia Bischoff, Joyce Yutzey, Katherine E. Srinivasan, R. Sathish Circ Res Original Research BACKGROUND: Cardiac valve disease is observed in 2.5% of the general population and 10% of the elderly people. Effective pharmacological treatments are currently not available, and patients with severe cardiac valve disease require surgery. PROX1 (prospero-related homeobox transcription factor 1) and FOXC2 (Forkhead box C2 transcription factor) are transcription factors that are required for the development of lymphatic and venous valves. We found that PROX1 and FOXC2 are expressed in a subset of valvular endothelial cells (VECs) that are located on the downstream (fibrosa) side of cardiac valves. Whether PROX1 and FOXC2 regulate cardiac valve development and disease is not known. METHODS: We used histology, electron microscopy, and echocardiography to investigate the structure and functioning of heart valves from Prox1(ΔVEC) mice in which Prox1 was conditionally deleted from VECs. Isolated valve endothelial cells and valve interstitial cells were used to identify the molecular mechanisms in vitro, which were tested in vivo by RNAScope, additional mouse models, and pharmacological approaches. The significance of our findings was tested by evaluation of human samples of mitral valve prolapse and aortic valve insufficiency. RESULTS: Histological analysis revealed that the aortic and mitral valves of Prox1(ΔVEC) mice become progressively thick and myxomatous. Echocardiography revealed that the aortic valves of Prox1(ΔVEC) mice are stenotic. FOXC2 was downregulated and PDGF-B (platelet-derived growth factor-B) was upregulated in the VECs of Prox1(ΔVEC) mice. Conditional knockdown of FOXC2 and conditional overexpression of PDGF-B in VECs recapitulated the phenotype of Prox1(ΔVEC) mice. PDGF-B was also increased in mice lacking FOXC2 and in human mitral valve prolapse and insufficient aortic valve samples. Pharmacological inhibition of PDGF-B signaling with imatinib partially ameliorated the valve defects of Prox1(ΔVEC) mice. CONCLUSIONS: PROX1 antagonizes PDGF-B signaling partially via FOXC2 to maintain the extracellular matrix composition and prevent myxomatous degeneration of cardiac valves. Lippincott Williams & Wilkins 2023-08-09 2023-09-01 /pmc/articles/PMC10487359/ /pubmed/37555328 http://dx.doi.org/10.1161/CIRCRESAHA.123.323027 Text en © 2023 The Authors. https://creativecommons.org/licenses/by-nc-nd/4.0/Circulation Research is published on behalf of the American Heart Association, Inc., by Wolters Kluwer Health, Inc. This is an open access article under the terms of the Creative Commons Attribution Non-Commercial-NoDerivs (https://creativecommons.org/licenses/by-nc-nd/4.0/) License, which permits use, distribution, and reproduction in any medium, provided that the original work is properly cited, the use is noncommercial, and no modifications or adaptations are made.
spellingShingle Original Research
Ho, Yen-Chun
Geng, Xin
O’Donnell, Anna
Ibarrola, Jaime
Fernandez-Celis, Amaya
Varshney, Rohan
Subramani, Kumar
Azartash-Namin, Zheila J.
Kim, Jang
Silasi, Robert
Wylie-Sears, Jill
Alvandi, Zahra
Chen, Lijuan
Cha, Boksik
Chen, Hong
Xia, Lijun
Zhou, Bin
Lupu, Florea
Burkhart, Harold M.
Aikawa, Elena
Olson, Lorin E.
Ahamed, Jasimuddin
López-Andrés, Natalia
Bischoff, Joyce
Yutzey, Katherine E.
Srinivasan, R. Sathish
PROX1 Inhibits PDGF-B Expression to Prevent Myxomatous Degeneration of Heart Valves
title PROX1 Inhibits PDGF-B Expression to Prevent Myxomatous Degeneration of Heart Valves
title_full PROX1 Inhibits PDGF-B Expression to Prevent Myxomatous Degeneration of Heart Valves
title_fullStr PROX1 Inhibits PDGF-B Expression to Prevent Myxomatous Degeneration of Heart Valves
title_full_unstemmed PROX1 Inhibits PDGF-B Expression to Prevent Myxomatous Degeneration of Heart Valves
title_short PROX1 Inhibits PDGF-B Expression to Prevent Myxomatous Degeneration of Heart Valves
title_sort prox1 inhibits pdgf-b expression to prevent myxomatous degeneration of heart valves
topic Original Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10487359/
https://www.ncbi.nlm.nih.gov/pubmed/37555328
http://dx.doi.org/10.1161/CIRCRESAHA.123.323027
work_keys_str_mv AT hoyenchun prox1inhibitspdgfbexpressiontopreventmyxomatousdegenerationofheartvalves
AT gengxin prox1inhibitspdgfbexpressiontopreventmyxomatousdegenerationofheartvalves
AT odonnellanna prox1inhibitspdgfbexpressiontopreventmyxomatousdegenerationofheartvalves
AT ibarrolajaime prox1inhibitspdgfbexpressiontopreventmyxomatousdegenerationofheartvalves
AT fernandezcelisamaya prox1inhibitspdgfbexpressiontopreventmyxomatousdegenerationofheartvalves
AT varshneyrohan prox1inhibitspdgfbexpressiontopreventmyxomatousdegenerationofheartvalves
AT subramanikumar prox1inhibitspdgfbexpressiontopreventmyxomatousdegenerationofheartvalves
AT azartashnaminzheilaj prox1inhibitspdgfbexpressiontopreventmyxomatousdegenerationofheartvalves
AT kimjang prox1inhibitspdgfbexpressiontopreventmyxomatousdegenerationofheartvalves
AT silasirobert prox1inhibitspdgfbexpressiontopreventmyxomatousdegenerationofheartvalves
AT wyliesearsjill prox1inhibitspdgfbexpressiontopreventmyxomatousdegenerationofheartvalves
AT alvandizahra prox1inhibitspdgfbexpressiontopreventmyxomatousdegenerationofheartvalves
AT chenlijuan prox1inhibitspdgfbexpressiontopreventmyxomatousdegenerationofheartvalves
AT chaboksik prox1inhibitspdgfbexpressiontopreventmyxomatousdegenerationofheartvalves
AT chenhong prox1inhibitspdgfbexpressiontopreventmyxomatousdegenerationofheartvalves
AT xialijun prox1inhibitspdgfbexpressiontopreventmyxomatousdegenerationofheartvalves
AT zhoubin prox1inhibitspdgfbexpressiontopreventmyxomatousdegenerationofheartvalves
AT lupuflorea prox1inhibitspdgfbexpressiontopreventmyxomatousdegenerationofheartvalves
AT burkhartharoldm prox1inhibitspdgfbexpressiontopreventmyxomatousdegenerationofheartvalves
AT aikawaelena prox1inhibitspdgfbexpressiontopreventmyxomatousdegenerationofheartvalves
AT olsonlorine prox1inhibitspdgfbexpressiontopreventmyxomatousdegenerationofheartvalves
AT ahamedjasimuddin prox1inhibitspdgfbexpressiontopreventmyxomatousdegenerationofheartvalves
AT lopezandresnatalia prox1inhibitspdgfbexpressiontopreventmyxomatousdegenerationofheartvalves
AT bischoffjoyce prox1inhibitspdgfbexpressiontopreventmyxomatousdegenerationofheartvalves
AT yutzeykatherinee prox1inhibitspdgfbexpressiontopreventmyxomatousdegenerationofheartvalves
AT srinivasanrsathish prox1inhibitspdgfbexpressiontopreventmyxomatousdegenerationofheartvalves