Mapping the developing human cardiac endothelium at single-cell resolution identifies MECOM as a regulator of arteriovenous gene expression
Cardiovascular Research

Abstract
Coronary vasculature formation is a critical event during cardiac development, essential for heart function throughout perinatal and adult life. However, current understanding of coronary vascular development has largely been derived from transgenic mouse models. The aim of this study was to characterize the transcriptome of the human foetal cardiac endothelium using single-cell RNA sequencing (scRNA-seq) to provide critical new insights into the cellular heterogeneity and transcriptional dynamics that underpin endothelial specification within the vasculature of the developing heart.
We acquired scRNA-seq data of over 10 000 foetal cardiac endothelial cells (ECs), revealing divergent EC subtypes including endocardial, capillary, venous, arterial, and lymphatic populations. Gene regulatory network analyses predicted roles for
scRNA-seq of the human foetal cardiac endothelium identified distinct EC populations. A predicted endocardial contribution to the developing coronary vasculature was identified, as well as subsequent arterial specification of capillary EC. Loss of
Contributors

Ian R McCracken
Author

Ross Dobie
Author

Matthew Bennett
Author

Rainha Passi
Author

Abdelaziz Beqqali
Author

Neil C Henderson
Author

Joanne C Mountford
Author

Paul R Riley
Author
University of Oxford Oxford , United Kingdom of Great Britain & Northern Ireland

Chris P Ponting
Author

Nicola Smart
Author
University of Oxford Oxford , United Kingdom of Great Britain & Northern Ireland

Mairi Brittan
Author

Andrew H Baker
Author
University of Edinburgh Edinburgh , United Kingdom of Great Britain & Northern Ireland

