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Trans-Synaptic Transmission of Vesicular Wnt Signals through Evi/Wntless

机译:通过Evi / Wntless的水泡Wnt信号的突触传递。

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摘要

Wnts play pivotal roles during development and in the mature nervous system. However, the mechanism by which Wnts traffic between cells has remained elusive. Here we demonstrate a mechanism of Wnt transmission through release of exosome-like vesicles containing the Wnt-binding protein Evenness Interrupted/Wntless/Sprinter (Evi/Wls/Srt). We show that at the Drosophila larval neuromuscular junction (NMJ), presynaptic vesicular release of Evi is required for the secretion of the Wnt, Wingless (Wg). We also show that Evi acts cell-autonomously in the postsynaptic Wnt-receiving cell to target dGRIP, a Wg-receptor-interacting protein, to postsynaptic sites. Upon Evi loss of function, dGRIP is not properly targeted to synaptic sites, interfering with postsynaptic Wnt signal transduction. These findings uncover a previously unknown cellular mechanism by which a secreted Wnt is transported across synapses by Evi-containing vesicles and reveal trafficking functions of Evi in both the Wnt-producing and the Wnt-receiving cells.
机译:Wnt在发育过程中和成熟的神经系统中起关键作用。但是,Wnts在单元之间进行通信的机制仍然难以捉摸。在这里,我们展示了通过释放包含Wnt结合蛋白Evenness Interrupted / Wntless / Sprinter(Evi / Wls / Srt)的外泌体样小泡来传递Wnt的机制。我们显示,在果蝇幼虫神经肌肉接头(NMJ),Evi的突触前囊泡释放是Wnt,无翅(Wg)分泌所必需的。我们还显示,Evi在突触后Wnt接收细胞中以细胞自主方式将dGRIP(一种Wg受体相互作用蛋白)靶向到突触后位点。 Evi功能丧失后,dGRIP不能正确地靶向突触位点,干扰突触后Wnt信号转导。这些发现揭示了以前未知的细胞机制,通过该机制,分泌的Wnt通过含Evi的囊泡跨突触转运,并揭示了Evi在产生Wnt的细胞和接收Wnt的细胞中的运输功能。

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