首页> 美国卫生研究院文献>Development (Cambridge England) >The Drosophila WIF1 homolog Shifted maintains glypican-independent Hedgehog signaling and interacts with the Hedgehog co-receptors Ihog and Boi
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The Drosophila WIF1 homolog Shifted maintains glypican-independent Hedgehog signaling and interacts with the Hedgehog co-receptors Ihog and Boi

机译:果蝇的WIF1同源物移位保持了Glypican独立的刺猬信号并与刺猬共受体Ihog和Boi相互作用

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摘要

Hedgehog (Hh) family proteins are secreted signaling ligands whose short- and long-range activities transform cellular fates in multiple contexts in organisms ranging from metazoans to humans. In the developing Drosophila wing, extracellular Hh binds to cell-bound glypican heparan sulfate proteoglycans (HSPGs) and the secreted protein Shifted (Shf), a member of Wnt inhibitory factor 1 (WIF1) family. The glypicans and Shf are required for long-range Hh movement and signaling; it has been proposed that Shf promotes long-range Hh signaling by reinforcing binding between Hh and the glypicans, and that much or all of glypican function in Hh signaling requires Shf. However, we will show here that Shf maintains short-range Hh signaling in the wing via a mechanism that does not require the presence of or binding to the Drosophila glypicans Dally and Dally-like protein. Conversely, we demonstrate interactions between Hh and the glypicans that are maintained, and even strengthened, in the absence of Shf. We present evidence that Shf binds to the CDO/BOC family Hh co-receptors Interference hedgehog (Ihog) and Brother of Ihog, suggesting that Shf regulates short-range Hh signaling through interactions with the receptor complex. In support of a functional interaction between Ihog and members of the Shf/WIF1 family, we show that Ihog can increase the Wnt-inhibitory activity of vertebrate WIF1; this result raises the possibility of interactions between WIF1 and vertebrate CDO/BOC family members.
机译:刺猬(Hh)家族蛋白是分泌的信号配体,其短时和远距离活动在后生动物到人类等多种生物中改变了细胞命运。在发育中的果蝇翼中,细胞外Hh与细胞结合的Glypican硫酸乙酰肝素蛋白聚糖(HSPG)和分泌的蛋白质Shifted(Shf)结合,后者是Wnt抑制因子1(WIF1)家族的成员。远距离Hh运动和信号传递需要glypicans和Shf;已经提出,Shf通过增强Hh和聚糖之间的结合来促进远距离Hh信号传导,并且在Hh信号传导中大部分或全部的聚糖结合功能需要Shf。但是,我们将在这里显示Shf通过一种机制,在机翼中维持短程Hh信号传导,该机制不需要果蝇Dally和Dally样蛋白的存在或与之结合。相反,我们证明了在没有Shf的情况下,Hh与Glypicans之间的相互作用得以维持甚至增强。我们目前的证据表明Shf绑定到CDO / BOC家庭Hh共同受体干扰刺猬(Ihog)和Ihog的兄弟,表明Shf通过与受体复合物的相互作用调节短程Hh信号传导。为了支持Ihog与Shf / WIF1家族成员之间的功能性相互作用,我们显示Ihog可以增加脊椎动物WIF1的Wnt抑制活性;这个结果增加了WIF1和脊椎动物CDO / BOC家庭成员之间相互作用的可能性。

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