Golub R, Adelman Z, Clementi J, Weiss R, Bonasera J, Servetnick M
Department of Biology, Ithaca College, Ithaca, NY 14850, USA.
Dev Genes Evol. 2000 Jul;210(7):345-57. doi: 10.1007/s004270000076.
Fibroblast growth factors (FGFs) mediate many cell-cell signaling events during early development. While the actions of FGFs have been well-studied, the roles played by specific members of the FGF receptor (FGFR) family are poorly understood. To characterize the roles played by individual FGFRs we compared the regulation and expression of the three Xenopus FGFRs described to date (XFGFR-1, XFGFR-2, and XFGFR-4). First, we describe the expression of Xenopus FGFR-4; XFGFR-4 is present as a maternal mRNA and is found in the embryo through at least the tadpole stage. XFGFR-4 and XFGFR-1 mRNAs are present at comparable levels, arguing that both mediate FGF signaling during early development. Second, the expression of XFGFR-4 in animal caps differs from the expression of XFGFR-1 and XFGFR-2, suggesting that the FGFRs are independently regulated in ectoderm. Third, using whole-mount in situ hybridization, we show that XFGFR-1, XFGFR-2, and XFGFR-4 are expressed in dramatically different patterns, arguing that specific FGF signaling events are mediated by different members of the FGFR family. Among these, FGF signaling during the induction of neural crest cells is likely to be mediated by XFGFR-4. Comparison of our results with previously reported FGFR expression patterns reveals that FGFR-1 expression is highly conserved among vertebrate embryos, and FGFR-2 expression shows many features that are conserved and some that are divergent. In contrast, the expression pattern of FGFR-4 is highly divergent among vertebrate embryos.
成纤维细胞生长因子(FGFs)在早期发育过程中介导许多细胞间信号传导事件。虽然FGFs的作用已得到充分研究,但FGF受体(FGFR)家族特定成员所起的作用却知之甚少。为了表征各个FGFR的作用,我们比较了迄今为止描述的三种非洲爪蟾FGFR(XFGFR - 1、XFGFR - 2和XFGFR - 4)的调控和表达情况。首先,我们描述了非洲爪蟾FGFR - 4的表达;XFGFR - 4以母源mRNA的形式存在,并且至少在蝌蚪阶段之前都能在胚胎中检测到。XFGFR - 4和XFGFR - 1的mRNA水平相当,这表明它们在早期发育过程中都介导FGF信号传导。其次,XFGFR - 4在动物帽中的表达与XFGFR - 1和XFGFR - 2不同,这表明FGFRs在外胚层中是独立调控的。第三,通过全胚胎原位杂交,我们发现XFGFR - 1、XFGFR - 2和XFGFR - 4以截然不同的模式表达,这表明特定的FGF信号传导事件是由FGFR家族的不同成员介导的。其中,神经嵴细胞诱导过程中的FGF信号传导可能由XFGFR - 4介导。将我们的结果与先前报道的FGFR表达模式进行比较后发现,FGFR - 1的表达在脊椎动物胚胎中高度保守,FGFR - 2的表达显示出许多保守特征以及一些不同特征。相比之下,FGFR - 4的表达模式在脊椎动物胚胎中差异很大。