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首页> 外文期刊>Development >Sonic hedgehog is not required for polarising activity in the Doublefoot mutant mouse limb bud.
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Sonic hedgehog is not required for polarising activity in the Doublefoot mutant mouse limb bud.

机译:双足突变小鼠肢芽中的极化活性不需要刺猬。

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The mouse mutant Doublefoot (Dbf) shows preaxial polydactyly of all four limbs. We have analysed limb development in this mutant with respect to morphogenesis, gene expression patterns and ectopic polarising activity. The results reveal a gain-of-function mutation at a locus that mediates pattern formation in the developing limb. Shh expression is identical with that of wild-type embryos, i.e. there is no ectopic expression. However, mesenchyme from the anterior aspects of Dbf/+ mutant limb buds, when transplanted to the anterior side of chick wing buds, induces duplication of the distal skeletal elements. Mid-distal mesenchymal transplants from early, but not later, Dbf/+ limb buds are also able to induce duplication. This demonstration of polarising activity in the absence of Shh expression identifies the gene at the Dbf locus as a new genetic component of the Shh signalling pathway, which (at least in its mutated form) is able to activate signal transduction independently of Shh. The mutant gene product is sufficient to fulfil the signalling properties of Shh including upregulation of the direct Shh target genes Ptc and Gli, and induction of the downstream target genes Bmp2, Fgf4 and Hoxd13. The expression domains of all these genes extend from their normal posterior domains into the anterior part of the limb bud without being focused on a discrete ectopic site. These observations dissociate polarising activity from Shh gene expression in the Dbf/+ limb bud. We suggest that the product of the normal Dbf gene is a key active constituent of the polarising region, possibly acting in the extracellular compartment.
机译:小鼠突变体Doublefoot(Dbf)显示所有四个肢体的前轴多指。我们已经分析了该突变体的形态,基因表达模式和异位极化活性方面的肢体发育。结果揭示了在发育中肢体中介导模式形成的基因座处的功能获得突变。 Shh表达与野生型胚胎相同,即没有异位表达。但是,来自Dbf / +突变肢芽的前部的间充质,当移植到鸡翅芽的前侧时,会诱导远端骨骼元件的重复。 Dbf / +肢芽从早期(但不是以后)进行中距离间充质移植也能够诱导复制。在没有Shh表达的情况下这种极化活性的证明将Dbf基因座处的基因鉴定为Shh信号通路的新遗传成分,该基因(至少以其突变形式)能够独立于Shh激活信号转导。突变基因产物足以满足Shh的信号传导特性,包括直接Shh靶基因Ptc和Gli的上调,以及下游靶基因Bmp2,Fgf4和Hoxd13的诱导。所有这些基因的表达域从其正常的后域延伸到肢芽的前部,而不会集中在离散的异位部位。这些观察结果使极化活性与Dbf / +肢芽中Shh基因的表达分离。我们建议正常Dbf基因的产物是极化区域的关键活性成分,可能在细胞外区室起作用。

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