Hernandez Rafael E, Putzke Aaron P, Myers Jonathan P, Margaretha Lilyana, Moens Cecilia B
HHMI and Division of Basic Science, Fred Hutchinson Cancer Research Center, 1100 Fairview Ave. N., Seattle, WA 98109-1024, USA.
Development. 2007 Jan;134(1):177-87. doi: 10.1242/dev.02706.
Retinoic acid (RA) is essential for normal vertebrate development, including the patterning of the central nervous system. During early embryogenesis, RA is produced in the trunk mesoderm through the metabolism of vitamin A derived from the maternal diet and behaves as a morphogen in the developing hindbrain where it specifies nested domains of Hox gene expression. The loss of endogenous sources of RA can be rescued by treatment with a uniform concentration of exogenous RA, indicating that domains of RA responsiveness can be shaped by mechanisms other than the simple diffusion of RA from a localized posterior source. Here, we show that the cytochrome p450 enzymes of the Cyp26 class, which metabolize RA into polar derivatives, function redundantly to shape RA-dependent gene-expression domains during hindbrain development. In zebrafish embryos depleted of the orthologs of the three mammalian CYP26 genes CYP26A1, CYP26B1 and CYP26C1, the entire hindbrain expresses RA-responsive genes that are normally restricted to nested domains in the posterior hindbrain. Furthermore, we show that Cyp26 enzymes are essential for exogenous RA to rescue hindbrain patterning in RA-depleted embryos. We present a ;gradient-free' model for hindbrain patterning in which differential RA responsiveness along the hindbrain anterior-posterior axis is shaped primarily by the dynamic expression of RA-degrading enzymes.
视黄酸(RA)对于正常脊椎动物的发育至关重要,包括中枢神经系统的模式形成。在胚胎发育早期,RA通过母体饮食中维生素A的代谢在躯干中胚层产生,并在后脑发育过程中作为一种形态发生素发挥作用,在那里它指定了Hox基因表达的嵌套结构域。内源性RA来源的缺失可以通过用均匀浓度的外源性RA处理来挽救,这表明RA反应性结构域可以由除了RA从局部后部来源简单扩散之外的机制塑造。在这里,我们表明,Cyp26类细胞色素p450酶将RA代谢为极性衍生物,在后脑发育过程中发挥冗余作用以塑造RA依赖性基因表达结构域。在缺乏三种哺乳动物CYP26基因CYP26A1、CYP26B1和CYP26C1直系同源物的斑马鱼胚胎中,整个后脑都表达RA反应性基因,这些基因通常局限于后脑后部的嵌套结构域。此外,我们表明Cyp26酶对于外源性RA挽救RA缺乏胚胎中的后脑模式形成至关重要。我们提出了一种后脑模式形成的“无梯度”模型,其中沿后脑前后轴的不同RA反应性主要由RA降解酶的动态表达塑造。