School of Biomedical Sciences, Joint Laboratories of Matrix Biology and Diseases, The University of Hong Kong, Hong Kong, China.
National Research Institute for Family Planning, Beijing, China.
JCI Insight. 2018 Jan 25;3(2). doi: 10.1172/jci.insight.98555.
Incomplete penetrance of congenital heart defects (CHDs) was observed in a mouse model. We hypothesized that the contribution of a major genetic locus modulates the manifestation of the CHDs. After genome-wide linkage mapping, fine mapping, and high-throughput targeted sequencing, a recessive frameshift mutation of the heterogeneous nuclear ribonucleoprotein A1 (Hnrnpa1) gene was confirmed (Hnrnpa1ct). Hnrnpa1 was expressed in both the first heart field (FHF) and second heart field (SHF) at the cardiac crescent stage but was only maintained in SHF progenitors after heart tube formation. Hnrnpa1ct/ct homozygous mutants displayed complete CHD penetrance, including truncated and incomplete looped heart tube at E9.5, ventricular septal defect (VSD) and persistent truncus arteriosus (PTA) at E13.5, and VSD and double outlet right ventricle at P0. Impaired development of the dorsal mesocardium and sinoatrial node progenitors was also observed. Loss of Hnrnpa1 expression leads to dysregulation of cardiac transcription networks and multiple signaling pathways, including BMP, FGF, and Notch in the SHF. Finally, two rare heterozygous mutations of HNRNPA1 were detected in human CHDs. These findings suggest a role of Hnrnpa1 in embryonic heart development in mice and humans.
在一个小鼠模型中观察到先天性心脏缺陷(CHD)不完全外显。我们假设一个主要遗传位点的贡献调节 CHD 的表现。经过全基因组连锁映射、精细映射和高通量靶向测序,证实了异质性核核糖核蛋白 A1(Hnrnpa1)基因的隐性移码突变(Hnrnpa1ct)。Hnrnpa1 在心脏新月形阶段的第一心区(FHF)和第二心区(SHF)中均有表达,但在心管形成后仅在 SHF 祖细胞中维持。Hnrnpa1ct/ct 纯合突变体表现出完全的 CHD 外显率,包括 E9.5 时的截断和不完全环化的心脏管,E13.5 时的室间隔缺损(VSD)和永存动脉干(PTA),以及 P0 时的 VSD 和双出口右心室。还观察到背侧心脏中胚层和窦房结祖细胞发育受损。Hnrnpa1 表达的丧失导致心脏转录网络和多种信号通路的失调,包括 SHF 中的 BMP、FGF 和 Notch。最后,在人类 CHD 中检测到两个罕见的 HNRNPA1 杂合突变。这些发现表明 Hnrnpa1 在小鼠和人类胚胎心脏发育中起作用。