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Expression of chicken fibroblast growth factor homologous factor (FHF)-1 and of differentially spliced isoforms of FHF-2 during development and involvement of FHF-2 in chicken limb development.

机译:鸡成纤维细胞生长因子同源因子(FHF)-1和FHF-2的可变剪接亚型的表达以及FHF-2参与鸡肢发育的过程。

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Members of the fibroblast growth factor (FGF) family have been identified as signaling molecules in a variety of developmental processes, including important roles in limb bud initiation, growth and patterning. This paper reports the cloning and characterization of the chicken orthologues of fibroblast growth factor homologous factors-1 and -2 (cFHF-1/cFGF-12 and cFHF-2/cFGF-13, respectively). We also describe the identification of a novel, conserved isoform of FHF-2 in chickens and mammals. This isoform arises by alternative splicing of the first exon of the FHF-2 gene and is predicted to encode a polypeptide with a distinct amino-terminus. Whole-mount in situ hybridization reveals restricted domains of expression of cFHF-1 and cFHF-2 in the developing neural tube, peripheral sensory ganglia and limb buds, and shows that the two cFHF-2 transcript isoforms are present in non-overlapping spatial distributions in the neural tube and adjacent structures. In the developing limbs, cFHF-1 is confined to the posterior mesoderm in an area that encompasses the zone of polarizing activity and cFHF-2 is confined to the distal anterior mesoderm in a region that largely overlaps the progress zone. Ectopic cFHF-2 expression is induced adjacent to grafts of cells expressing Sonic Hedgehog and the zone of cFHF-2 expression is expanded in talpid2 embryos. In the absence of the apical ectodermal ridge or in wingless or limbless mutant embryos, expression of cFHF-1 and cFHF-2 is lost from the limb bud. A role for cFHF-2 in the patterning and growth of skeletal elements is implied by the observation that engraftment of developing limb buds with QT6 cells expressing a cFHF-2 isoform that is normally expressed in the limb leads to a variety of morphological defects. Finally, we show that a secreted version of cFHF-2 activates the expression of HoxD13, HoxD11, Fgf-4 and BMP-2 ectopically, consistent with cFHF-2 playing a role in anterior-posterior patterning of the limb.
机译:成纤维细胞生长因子(FGF)家族的成员已被确定为各种发育过程中的信号分子,包括在肢芽萌生,生长和模式形成中的重要作用。本文报道了成纤维细胞生长因子同源因子-1和-2(分别为cFHF-1 / cFGF-12和cFHF-2 / cFGF-13)的鸡直向同源物的克隆和鉴定。我们还描述了在鸡和哺乳动物中新型,保守的FHF-2异构体的鉴定。该同工型通过FHF-2基因的第一个外显子的可变剪接产生,并且被预测为编码具有不同氨基末端的多肽。整个原位杂交揭示了发育中的神经管,周围感觉神经节和肢体芽中cFHF-1和cFHF-2表达的受限制域,并显示了两个cFHF-2转录亚型存在于不重叠的空间分布中在神经管和邻近结构中。在发育中的肢体中,cFHF-1被限制在包围极化活动区域的区域的后中胚层,而cFHF-2被限制在与进展区域大量重叠的区域的前中胚层。在表达Sonic Hedgehog的细胞移植物附近诱导异位cFHF-2表达,并且在talpid2胚胎中扩大了cFHF-2表达区域。在没有根尖外胚层脊或无翅或无肢突变体胚胎的情况下,cFHF-1和cFHF-2的表达从肢芽中丢失。通过观察发现,发育中的肢芽与表达正常情况下在肢体中表达的cFHF-2亚型的QT6细胞的植入,提示了cFHF-2在骨骼元素的形成和生长中的作用。最后,我们显示了分泌的cFHF-2版本可异位激活HoxD13,HoxD11,Fgf-4和BMP-2的表达,与cFHF-2在肢体前后模式中发挥作用相一致。

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