医学
内科学
细胞生物学
心肌病
内皮干细胞
胚胎干细胞
心脏发育
癌症研究
心力衰竭
生物
基因
遗传学
体外
作者
Siyeon Rhee,David T. Paik,Johnson Y. Yang,Danielle Nagelberg,Ian M. Williams,Lei Tian,R A Roth,Mark Chandy,Jiyeon Ban,Nadjet Belbachir,Seokho Kim,Hao Zhang,Ragini Phansalkar,Ka Man Wong,D. A. King,Caroline Valdez,Virginia D. Winn,Ashby J. Morrison,Joseph C. Wu,Kristy Red‐Horse
标识
DOI:10.1093/eurheartj/ehab298
摘要
Abstract Aims Non-compaction cardiomyopathy is a devastating genetic disease caused by insufficient consolidation of ventricular wall muscle that can result in inadequate cardiac performance. Despite being the third most common cardiomyopathy, the mechanisms underlying the disease, including the cell types involved, are poorly understood. We have previously shown that endothelial cell-specific deletion of the chromatin remodeller gene Ino80 results in defective coronary vessel development that leads to ventricular non-compaction in embryonic mouse hearts. We aimed to identify candidate angiocrines expressed by endocardial and endothelial cells (ECs) in wildtype and LVNC conditions in Tie2Cre;Ino80 fl/fltransgenic embryonic mouse hearts, and test the effect of these candidates on cardiomyocyte proliferation and maturation. Methods and results We used single-cell RNA-sequencing to characterize endothelial and endocardial defects in Ino80-deficient hearts. We observed a pathological endocardial cell population in the non-compacted hearts and identified multiple dysregulated angiocrine factors that dramatically affected cardiomyocyte behaviour. We identified Col15a1 as a coronary vessel-secreted angiocrine factor, downregulated by Ino80-deficiency, that functioned to promote cardiomyocyte proliferation. Furthermore, mutant endocardial and endothelial cells up-regulated expression of secreted factors, such as Tgfbi, Igfbp3, Isg15, and Adm, which decreased cardiomyocyte proliferation and increased maturation. Conclusions These findings support a model where coronary endothelial cells normally promote myocardial compaction through secreted factors, but that endocardial and endothelial cells can secrete factors that contribute to non-compaction under pathological conditions.
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