The Heart Institute, Molecular Cardiovascular Biology and Developmental Biology Divisions, Cincinnati Children's Hospital Medical Center, Cincinnati, OH 45229, USA.
Development. 2014 Apr;141(8):1638-48. doi: 10.1242/dev.105874. Epub 2014 Mar 25.
Normal heart development requires appropriate levels of retinoic acid (RA) signaling. RA levels in embryos are dampened by Cyp26 enzymes, which metabolize RA into easily degraded derivatives. Loss of Cyp26 function in humans is associated with numerous developmental syndromes that include cardiovascular defects. Although previous studies have shown that Cyp26-deficient vertebrate models also have cardiovascular defects, the mechanisms underlying these defects are not understood. Here, we found that in zebrafish, two Cyp26 enzymes, Cyp26a1 and Cyp26c1, are expressed in the anterior lateral plate mesoderm (ALPM) and predominantly overlap with vascular progenitors (VPs). Although singular knockdown of Cyp26a1 or Cyp26c1 does not overtly affect cardiovascular development, double Cyp26a1 and Cyp26c1 (referred to here as Cyp26)-deficient embryos have increased atrial cells and reduced cranial vasculature cells. Examining the ALPM using lineage tracing indicated that in Cyp26-deficient embryos the myocardial progenitor field contains excess atrial progenitors and is shifted anteriorly into a region that normally solely gives rise to VPs. Although Cyp26 expression partially overlaps with VPs in the ALPM, we found that Cyp26 enzymes largely act cell non-autonomously to promote appropriate cardiovascular development. Our results suggest that localized expression of Cyp26 enzymes cell non-autonomously defines the boundaries between the cardiac and VP fields within the ALPM through regulating RA levels, which ensures a proper balance of myocardial and endothelial lineages. Our study provides novel insight into the earliest consequences of Cyp26 deficiency that underlie cardiovascular malformations in vertebrate embryos.
正常心脏发育需要适当水平的视黄酸(RA)信号。胚胎中的 RA 水平受到 Cyp26 酶的抑制,Cyp26 酶将 RA 代谢为易于降解的衍生物。人类 Cyp26 功能丧失与多种发育综合征有关,包括心血管缺陷。尽管先前的研究表明 Cyp26 缺陷的脊椎动物模型也存在心血管缺陷,但这些缺陷的机制尚不清楚。在这里,我们发现斑马鱼中的两种 Cyp26 酶 Cyp26a1 和 Cyp26c1 在侧板中胚层(ALPM)的前外侧表达,并主要与血管祖细胞(VP)重叠。尽管 Cyp26a1 或 Cyp26c1 的单一敲低不会明显影响心血管发育,但 Cyp26a1 和 Cyp26c1 的双敲低(称为 Cyp26)胚胎中心房细胞增加,颅血管细胞减少。通过谱系追踪检查 ALPM 表明,在 Cyp26 缺陷的胚胎中,心肌祖细胞场含有过多的心房祖细胞,并向前移至一个通常仅产生 VP 的区域。尽管 Cyp26 在 ALPM 中的表达与 VP 部分重叠,但我们发现 Cyp26 酶主要通过细胞非自主性作用来促进适当的心血管发育。我们的结果表明,Cyp26 酶在 ALPM 中的局部表达通过调节 RA 水平非自主性地定义了心脏和 VP 场之间的边界,从而确保心肌和内皮谱系之间的适当平衡。我们的研究为 Cyp26 缺陷导致脊椎动物胚胎心血管畸形的最早后果提供了新的见解。