...
首页> 外文期刊>Development >Differential regulation of gene expression in the digit forming area of the mouse limb bud by SHH and gremlin 1/FGF-mediated epithelial-mesenchymal signalling.
【24h】

Differential regulation of gene expression in the digit forming area of the mouse limb bud by SHH and gremlin 1/FGF-mediated epithelial-mesenchymal signalling.

机译:SHH和gremlin 1 / FGF介导的上皮-间充质信号转导在小鼠肢芽数字形成区域的基因表达差异调节。

获取原文
获取原文并翻译 | 示例
           

摘要

Spatially and temporally coordinated changes in gene expression are crucial to orderly progression of embryogenesis. We combine mouse genetics with experimental manipulation of signalling to analyze the kinetics by which the SHH morphogen and the BMP antagonist gremlin 1 (GREM1) control gene expression in the digit-forming mesenchyme of mouse limb buds. Although most mesenchymal cells respond rapidly to SHH signalling, the transcriptional upregulation of specific SHH target signals in the mesenchyme occurs with differential temporal kinetics and in a spatially restricted fashion. In particular, the expression of the BMP antagonist Grem1 is always upregulated in mesenchymal cells located distal to the SHH source and acts upstream of FGF signalling by the apical ectodermal ridge. GREM1/FGF-mediated feedback signalling is, in turn, required to propagate SHH and establish the presumptive digit expression domains of the Notch ligand jagged 1 (Jag1) and 5'Hoxd genes in the distal limb bud mesenchyme. Their establishment is significantly delayed in Grem1-deficient limb buds and cannot be rescued by specific restoration of SHH signalling in mutant limb buds. This shows that GREM1/FGF feedback signalling is required for regulation of the temporal kinetics of the mesenchymal response to SHH signalling. Finally, inhibition of SHH signal transduction at distinct time points reveals the differential temporal dependence of Grem1, Jag1 and 5'Hoxd gene expression on SHH signalling. In particular, the expression of Hoxd13 depends on SHH signal transduction significantly longer than does Hoxd11 expression, revealing that the reverse co-linear establishment, but not maintenance of their presumptive digit expression domains, depends on SHH signalling.
机译:基因表达的时空协调变化对胚胎发生的有序进展至关重要。我们结合小鼠遗传学与信号的实验操纵来分析动力学,SHH形态发生原和BMP拮抗剂gremlin 1(GREM1)控制小鼠肢芽的数字形成间充质中的基因表达。尽管大多数间充质细胞对SHH信号快速反应,但间充质中特定SHH靶信号的转录上调发生时空动力学不同且受空间限制。特别是,BMP拮抗剂Grem1的表达始终在SHH来源远端的间充质细胞中上调,并在根尖外胚层的FGF信号传导上游起作用。反过来,需要GREM1 / FGF介导的反馈信号传导SHH并在远端肢芽芽间充质中建立Notch配体锯齿状1(Jag1)和5'Hoxd基因的假定数字表达域。它们的建立在缺乏Grem1的肢芽中明显延迟,并且不能通过突变肢芽中SHH信号的特异性恢复来挽救。这表明GREM1 / FGF反馈信号是调节SHH信号间充质反应时间动力学所必需的。最后,在不同时间点抑制SHH信号转导揭示了Grem1,Jag1和5'Hoxd基因表达对SHH信号的时空差异。特别地,Hoxd13的表达取决于SHH信号转导的时间明显长于Hoxd11的表达,这表明反向共线性建立而不是其推定数字表达域的维持取决于SHH信号转导。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号