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Sox7‐positive endothelial progenitors establish coronary arteries and govern ventricular compaction

The cardiac endothelium influences ventricular chamber development by coordinating trabeculation and compaction. However, the endothelial‐specific molecular mechanisms mediating this coordination are not fully understood. Here, we identify the Sox7 transcription factor as a critical cue instructing...

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Autores principales: Chiang, Ivy KN, Humphrey, David, Mills, Richard J, Kaltzis, Peter, Pachauri, Shikha, Graus, Matthew, Saha, Diptarka, Wu, Zhijian, Young, Paul, Sim, Choon Boon, Davidson, Tara, Hernandez‐Garcia, Andres, Shaw, Chad A, Renwick, Alexander, Scott, Daryl A, Porrello, Enzo R, Wong, Emily S, Hudson, James E, Red‐Horse, Kristy, del Monte‐Nieto, Gonzalo, Francois, Mathias
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10561369/
https://www.ncbi.nlm.nih.gov/pubmed/37551717
http://dx.doi.org/10.15252/embr.202255043
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author Chiang, Ivy KN
Humphrey, David
Mills, Richard J
Kaltzis, Peter
Pachauri, Shikha
Graus, Matthew
Saha, Diptarka
Wu, Zhijian
Young, Paul
Sim, Choon Boon
Davidson, Tara
Hernandez‐Garcia, Andres
Shaw, Chad A
Renwick, Alexander
Scott, Daryl A
Porrello, Enzo R
Wong, Emily S
Hudson, James E
Red‐Horse, Kristy
del Monte‐Nieto, Gonzalo
Francois, Mathias
author_facet Chiang, Ivy KN
Humphrey, David
Mills, Richard J
Kaltzis, Peter
Pachauri, Shikha
Graus, Matthew
Saha, Diptarka
Wu, Zhijian
Young, Paul
Sim, Choon Boon
Davidson, Tara
Hernandez‐Garcia, Andres
Shaw, Chad A
Renwick, Alexander
Scott, Daryl A
Porrello, Enzo R
Wong, Emily S
Hudson, James E
Red‐Horse, Kristy
del Monte‐Nieto, Gonzalo
Francois, Mathias
author_sort Chiang, Ivy KN
collection PubMed
description The cardiac endothelium influences ventricular chamber development by coordinating trabeculation and compaction. However, the endothelial‐specific molecular mechanisms mediating this coordination are not fully understood. Here, we identify the Sox7 transcription factor as a critical cue instructing cardiac endothelium identity during ventricular chamber development. Endothelial‐specific loss of Sox7 function in mice results in cardiac ventricular defects similar to non‐compaction cardiomyopathy, with a change in the proportions of trabecular and compact cardiomyocytes in the mutant hearts. This phenotype is paralleled by abnormal coronary artery formation. Loss of Sox7 function disrupts the transcriptional regulation of the Notch pathway and connexins 37 and 40, which govern coronary arterial specification. Upon Sox7 endothelial‐specific deletion, single‐nuclei transcriptomics analysis identifies the depletion of a subset of Sox9/Gpc3‐positive endocardial progenitor cells and an increase in erythro‐myeloid cell lineages. Fate mapping analysis reveals that a subset of Sox7‐null endothelial cells transdifferentiate into hematopoietic but not cardiomyocyte lineages. Our findings determine that Sox7 maintains cardiac endothelial cell identity, which is crucial to the cellular cross‐talk that drives ventricular compaction and coronary artery development.
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spelling pubmed-105613692023-10-10 Sox7‐positive endothelial progenitors establish coronary arteries and govern ventricular compaction Chiang, Ivy KN Humphrey, David Mills, Richard J Kaltzis, Peter Pachauri, Shikha Graus, Matthew Saha, Diptarka Wu, Zhijian Young, Paul Sim, Choon Boon Davidson, Tara Hernandez‐Garcia, Andres Shaw, Chad A Renwick, Alexander Scott, Daryl A Porrello, Enzo R Wong, Emily S Hudson, James E Red‐Horse, Kristy del Monte‐Nieto, Gonzalo Francois, Mathias EMBO Rep Articles The cardiac endothelium influences ventricular chamber development by coordinating trabeculation and compaction. However, the endothelial‐specific molecular mechanisms mediating this coordination are not fully understood. Here, we identify the Sox7 transcription factor as a critical cue instructing cardiac endothelium identity during ventricular chamber development. Endothelial‐specific loss of Sox7 function in mice results in cardiac ventricular defects similar to non‐compaction cardiomyopathy, with a change in the proportions of trabecular and compact cardiomyocytes in the mutant hearts. This phenotype is paralleled by abnormal coronary artery formation. Loss of Sox7 function disrupts the transcriptional regulation of the Notch pathway and connexins 37 and 40, which govern coronary arterial specification. Upon Sox7 endothelial‐specific deletion, single‐nuclei transcriptomics analysis identifies the depletion of a subset of Sox9/Gpc3‐positive endocardial progenitor cells and an increase in erythro‐myeloid cell lineages. Fate mapping analysis reveals that a subset of Sox7‐null endothelial cells transdifferentiate into hematopoietic but not cardiomyocyte lineages. Our findings determine that Sox7 maintains cardiac endothelial cell identity, which is crucial to the cellular cross‐talk that drives ventricular compaction and coronary artery development. John Wiley and Sons Inc. 2023-08-08 /pmc/articles/PMC10561369/ /pubmed/37551717 http://dx.doi.org/10.15252/embr.202255043 Text en © 2023 The Authors. Published under the terms of the CC BY 4.0 license https://creativecommons.org/licenses/by/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Articles
Chiang, Ivy KN
Humphrey, David
Mills, Richard J
Kaltzis, Peter
Pachauri, Shikha
Graus, Matthew
Saha, Diptarka
Wu, Zhijian
Young, Paul
Sim, Choon Boon
Davidson, Tara
Hernandez‐Garcia, Andres
Shaw, Chad A
Renwick, Alexander
Scott, Daryl A
Porrello, Enzo R
Wong, Emily S
Hudson, James E
Red‐Horse, Kristy
del Monte‐Nieto, Gonzalo
Francois, Mathias
Sox7‐positive endothelial progenitors establish coronary arteries and govern ventricular compaction
title Sox7‐positive endothelial progenitors establish coronary arteries and govern ventricular compaction
title_full Sox7‐positive endothelial progenitors establish coronary arteries and govern ventricular compaction
title_fullStr Sox7‐positive endothelial progenitors establish coronary arteries and govern ventricular compaction
title_full_unstemmed Sox7‐positive endothelial progenitors establish coronary arteries and govern ventricular compaction
title_short Sox7‐positive endothelial progenitors establish coronary arteries and govern ventricular compaction
title_sort sox7‐positive endothelial progenitors establish coronary arteries and govern ventricular compaction
topic Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10561369/
https://www.ncbi.nlm.nih.gov/pubmed/37551717
http://dx.doi.org/10.15252/embr.202255043
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