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The Drosophila ortholog of the human Wnt inhibitor factor Shifted controls the diffusion of lipid-modified Hedgehog.

机译:人Wnt抑制剂因子Shift的果蝇直系同源基因控制脂质修饰的刺猬的扩散。

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The Hedgehog (Hh) family of morphogenetic proteins has important instructional roles in metazoan development and human diseases. Lipid modified Hh is able to migrate to and program cells far away from its site of production despite being associated with membranes. To investigate the Hh spreading mechanism, we characterized Shifted (Shf) as a component in the Drosophila Hh pathway. We show that Shf is the ortholog of the human Wnt inhibitory factor (WIF), a secreted antagonist of the Wingless pathway. In contrast, Shf is required for Hh stability and for lipid-modified Hh diffusion. Shf colocalizes with Hh in the extracellular matrix and interacts with the heparan sulfate proteoglycans (HSPG), leading us to suggest that Shf could provide HSPG specificity for Hh. We also show that human WIF inhibits Wg signaling in Drosophila without affecting the Hh pathway, indicating that different WIF family members might have divergent functions in each pathway.
机译:形态发生蛋白的刺猬(Hh)家族在后生动物发展和人类疾病中具有重要的指导作用。尽管与膜有关,但脂质修饰的Hh仍能够迁移到远离其生产部位的细胞并对其进行编程。为了调查Hh传播机制,我们将Shifted(Shf)表征为果蝇Hh途径的一个组成部分。我们显示,Shf是人类Wnt抑制因子(WIF),无翅途径的分泌拮抗剂的直系同源物。相反,Shf是Hh稳定性和脂质修饰的Hh扩散所必需的。 Shf与Hh在细胞外基质中共定位并与硫酸乙酰肝素蛋白聚糖(HSPG)相互作用,这使我们提出Shf可以为Hh提供HSPG特异性。我们还表明,人类WIF抑制果蝇中的Wg信号而不影响Hh途径,表明不同的WIF家族成员可能在每个途径中具有不同的功能。

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