Leon H. Charney Division of Cardiology, NYU Grossman School of Medicine, New York, NY 10016, USA.
Development. 2023 Nov 1;150(21). doi: 10.1242/dev.202054. Epub 2023 Oct 24.
Reciprocal interactions between non-myocytes and cardiomyocytes regulate cardiac growth and differentiation. Here, we report that the transcription factor Ebf1 is highly expressed in non-myocytes and potently regulates heart development. Ebf1-deficient hearts display myocardial hypercellularity and reduced cardiomyocyte size, ventricular conduction system hypoplasia, and conduction system disease. Growth abnormalities in Ebf1 knockout hearts are observed as early as embryonic day 13.5. Transcriptional profiling of Ebf1-deficient embryonic cardiac non-myocytes demonstrates dysregulation of Polycomb repressive complex 2 targets, and ATAC-Seq reveals altered chromatin accessibility near many of these same genes. Gene set enrichment analysis of differentially expressed genes in cardiomyocytes isolated from E13.5 hearts of wild-type and mutant mice reveals significant enrichment of MYC targets and, consistent with this finding, we observe increased abundance of MYC in mutant hearts. EBF1-deficient non-myocytes, but not wild-type non-myocytes, are sufficient to induce excessive accumulation of MYC in co-cultured wild-type cardiomyocytes. Finally, we demonstrate that BMP signaling induces Ebf1 expression in embryonic heart cultures and controls a gene program enriched in EBF1 targets. These data reveal a previously unreported non-cell-autonomous pathway controlling cardiac growth and differentiation.
非心肌细胞与心肌细胞之间的相互作用调节心脏的生长和分化。在这里,我们报告转录因子 Ebf1 在非心肌细胞中高度表达,并能有力地调节心脏发育。Ebf1 缺陷型心脏表现出心肌细胞过度增生和心肌细胞体积减小、心室传导系统发育不良和传导系统疾病。Ebf1 敲除型心脏的生长异常早在胚胎第 13.5 天就可以观察到。对 Ebf1 缺陷型胚胎心脏非心肌细胞的转录组分析表明多梳抑制复合物 2 靶基因的失调,ATAC-Seq 揭示了许多相同基因附近染色质可及性的改变。从野生型和突变型小鼠 E13.5 心脏分离的心肌细胞中差异表达基因的基因集富集分析显示 MYC 靶基因的显著富集,与这一发现一致,我们观察到突变型心脏中 MYC 的丰度增加。Ebf1 缺陷型非心肌细胞而非野生型非心肌细胞足以诱导共培养的野生型心肌细胞中 MYC 的过度积累。最后,我们证明 BMP 信号在胚胎心脏培养物中诱导 Ebf1 表达,并控制富含 EBF1 靶基因的基因程序。这些数据揭示了一个以前未被报道的控制心脏生长和分化的非细胞自主途径。