Kume T, Jiang H, Topczewska J M, Hogan B L
Howard Hughes Medical Institute and Department of Cell Biology, Vanderbilt University Medical Center, Nashville, Tennessee 37232, USA.
Genes Dev. 2001 Sep 15;15(18):2470-82. doi: 10.1101/gad.907301.
The murine Foxc1/Mf1 and Foxc2/Mfh1 genes encode closely related forkhead/winged helix transcription factors with overlapping expression in the forming somites and head mesoderm and endothelial and mesenchymal cells of the developing heart and blood vessels. Embryos lacking either Foxc1 or Foxc2, and most compound heterozygotes, die pre- or perinatally with similar abnormal phenotypes, including defects in the axial skeleton and cardiovascular system. However, somites and major blood vessels do form. This suggested that the genes have similar, dose-dependent functions, and compensate for each other in the early development of the heart, blood vessels, and somites. In support of this hypothesis, we show here that compound Foxc1; Foxc2 homozygotes die earlier and with much more severe defects than single homozygotes alone. Significantly, they have profound abnormalities in the first and second branchial arches, and the early remodeling of blood vessels. Moreover, they show a complete absence of segmented paraxial mesoderm, including anterior somites. Analysis of compound homozygotes shows that Foxc1 and Foxc2 are both required for transcription in the anterior presomitic mesoderm of paraxis, Mesp1, Mesp2, Hes5, and Notch1, and for the formation of sharp boundaries of Dll1, Lfng, and ephrinB2 expression. We propose that the two genes interact with the Notch signaling pathway and are required for the prepatterning of anterior and posterior domains in the presumptive somites through a putative Notch/Delta/Mesp regulatory loop.
小鼠的Foxc1/Mf1和Foxc2/Mfh1基因编码密切相关的叉头/翼状螺旋转录因子,它们在形成的体节、头部中胚层以及发育中的心脏和血管的内皮细胞和间充质细胞中表达重叠。缺乏Foxc1或Foxc2的胚胎,以及大多数复合杂合子,在产前或围产期死亡,具有相似的异常表型,包括轴向骨骼和心血管系统的缺陷。然而,体节和主要血管确实形成。这表明这些基因具有相似的剂量依赖性功能,并在心脏、血管和体节的早期发育中相互补偿。为支持这一假设,我们在此表明,复合Foxc1;Foxc2纯合子比单独的单个纯合子死亡更早且缺陷更严重。值得注意的是,它们在第一和第二鳃弓以及血管的早期重塑中存在严重异常。此外,它们显示出完全没有节段性的轴旁中胚层,包括前体节。对复合纯合子的分析表明,Foxc1和Foxc2对于轴旁蛋白、Mesp1、Mesp2、Hes5和Notch1在前体节中胚层的转录,以及对于Dll1、Lfng和ephrinB2表达的清晰边界的形成都是必需的。我们提出这两个基因与Notch信号通路相互作用,并且通过假定的Notch/Delta/Mesp调节环,对于推定体节中前后区域的预模式形成是必需的。