Université Paris Cité, Imagine-Institut Pasteur, Unit of Heart Morphogenesis, INSERM UMR1163, 75015 Paris, France.
Université Paris Cité, Imagine-Institut Pasteur, Unit of Heart Morphogenesis, INSERM UMR1163, 75015 Paris, France; Institut Pasteur, Université Paris Cité, Bioinformatics and Biostatistics Hub, 75015 Paris, France.
Dev Cell. 2023 Nov 6;58(21):2217-2234.e8. doi: 10.1016/j.devcel.2023.09.006. Epub 2023 Oct 17.
Despite their burden, most congenital defects remain poorly understood, due to lack of knowledge of embryological mechanisms. Here, we identify Greb1l mutants as a mouse model of crisscross heart. Based on 3D quantifications of shape changes, we demonstrate that torsion of the atrioventricular canal occurs together with supero-inferior ventricles at E10.5, after heart looping. Mutants phenocopy partial deficiency in retinoic acid signaling, which reflect overlapping pathways in cardiac precursors. Spatiotemporal gene mapping and cross-correlated transcriptomic analyses further reveal the role of Greb1l in maintaining a pool of dorsal pericardial wall precursor cells during heart tube elongation, likely by controlling ribosome biogenesis and cell differentiation. Consequently, we observe growth arrest and malposition of the outflow tract, which are predictive of abnormal tube remodeling in mutants. Our work on a rare cardiac malformation opens novel perspectives on the origin of a broader spectrum of congenital defects associated with GREB1L in humans.
尽管存在负担,但由于对胚胎发生机制缺乏了解,大多数先天性缺陷仍未得到很好的理解。在这里,我们将 Greb1l 突变体鉴定为十字形心脏的小鼠模型。基于对形状变化的 3D 定量分析,我们证明在心脏环化后,房室管的扭转与 E10.5 时的上下心室一起发生。突变体表现出视黄酸信号转导部分缺乏的表型,这反映了心脏前体细胞中重叠的途径。时空基因图谱和交叉相关转录组分析进一步揭示了 Greb1l 在心脏管伸长过程中维持背侧心包壁前体细胞库的作用,可能通过控制核糖体生物发生和细胞分化来实现。因此,我们观察到流出道的生长停滞和错位,这预示着突变体中存在异常管重塑。我们对一种罕见的心脏畸形的研究为与人类 GREB1L 相关的更广泛先天性缺陷的起源开辟了新的视角。