首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Inaugural Article: Secreted Wingless-interacting molecule (Swim) promotes long-range signaling by maintaining Wingless solubility
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Inaugural Article: Secreted Wingless-interacting molecule (Swim) promotes long-range signaling by maintaining Wingless solubility

机译:开幕文章:分泌的无翅相互作用分子(游泳)通过维持无翅溶解性促进长距离信号传导

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摘要

Lipid-modified Wnt/Wingless (Wg) proteins can signal to their target cells in a short- or long-range manner. How these hydrophobic proteins travel through the extracellular environment remains an outstanding question. Here, we report on a Wg binding protein, Secreted Wg-interacting molecule (Swim), that facilitates Wg diffusion through the extracellular matrix. Swim, a putative member of the Lipocalin family of extracellular transport proteins, binds to Wg with nanomolar affinity in a lipid-dependent manner. In quantitative signaling assays, Swim is sufficient to maintain the solubility and activity of purified Wg. In Drosophila, swim RNAi phenotypes resemble wg loss-of-function phenotypes in long-range signaling. We propose that Swim is a cofactor that promotes long-range Wg signaling in vivo by maintaining the solubility of Wg.
机译:脂质修饰的Wnt /无翅(Wg)蛋白可以短距离或长距离方式向其靶细胞发出信号。这些疏水蛋白如何在细胞外环境中传播仍然是一个悬而未决的问题。在这里,我们报道了Wg结合蛋白,即分泌的Wg相互作用分子(Swim),它有助于Wg通过细胞外基质扩散。 Swim是细胞外转运蛋白Lipocalin家族的推定成员,以脂类依赖性方式以纳摩尔亲和力与Wg结合。在定量信号分析中,Swim足以维持纯化的Wg的溶解度和活性。在果蝇中,游泳RNAi表型在远程信号传导中类似于wg功能丧失表型。我们提出,游泳是通过维持Wg的溶解度而在体内促进远距离Wg信号传导的辅助因子。

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