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Mouse dispatched mutants fail to distribute hedgehog proteins and are defective in hedgehog signaling.

机译:小鼠调度的突变体无法分配刺猬蛋白,并且在刺猬信号中存在缺陷。

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Hedgehog (Hh) signaling plays a major role in multiple aspects of embryonic development, which involves both short- and long-range signaling from localized Hh sources. One unusual aspect of Hh signaling is the autoproteolytic processing of Hh followed by lipid modification. As a consequence, the N-terminal fragment of Hh becomes membrane anchored on the cell surface of Hh-producing cells. A key issue in Hh signaling is to understand the molecular mechanisms by which lipid-modified Hh protein is transported from its sites of synthesis and subsequently moves through the morphogenetic field. The dispatched gene, which encodes a putative multipass membrane protein, was initially identified in Drosophila and is required in Hh-producing cells, where it facilitates the transport of cholesterol-modified Hh. We report the identification of the mouse dispatched (Disp) gene and a phenotypic analysis of Disp mutant mice. Disp-null mice phenocopy mice deficient in the smoothened gene, an essential component for Hh reception, suggesting that Disp is essential for Hh signaling. This conclusion was further supported by a detailed molecular analysis of Disp knockout mice, which exhibit defects characteristic of loss of Hh signaling. We also provide evidence that Disp is not required for Hh protein synthesis or processing, but rather for the movement of Hh protein from its sites of synthesis in mice. Taken together, our results reveal a conserved mechanism of Hh protein movement in Hh-producing cells that is essential for proper Hh signaling.
机译:刺猬(Hh)信号在胚胎发育的多个方面起着重要作用,涉及本地化Hh来源的短程和长程信号。 Hh信号传导的一个不寻常方面是Hh的自蛋白水解过程,然后进行脂质修饰。结果,Hh的N-末端片段被膜锚定在产生Hh的细胞的细胞表面上。 Hh信号传递中的关键问题是了解脂质修饰的Hh蛋白从其合成位点转运并随后穿过形态发生场的分子机制。最初在果蝇中鉴定到了编码假定的多程膜蛋白的已调度基因,而该基因在产生Hh的细胞中是必需的,在该细胞中它促进胆固醇修饰的Hh的运输。我们报告鉴定的小鼠派遣(Disp)基因和Disp突变小鼠的表型分析。 Disp-null小鼠表型小鼠缺乏平滑化的基因,这是Hh接收的重要组成部分,表明Disp对于Hh信号传导至关重要。 Disp基因敲除小鼠的详细分子分析进一步支持了该结论,这些分子分析显示出Hh信号丢失的缺陷特征。我们还提供证据表明Disp不是Hh蛋白合成或加工所必需的,而是Hh蛋白从其合成部位在小鼠中的运动所必需的。综上所述,我们的结果揭示了Hh产生细胞中Hh蛋白运动的保守机制,这对于正确的Hh信号传导至关重要。

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