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Turtle interacts with borderless in regulating glial extension and axon ensheathment

机译:乌龟与无边际相互作用调节胶质细胞的伸展和轴突鞘

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Proper recognition between axons and glial processes is required for the establishment of axon ensheathment in the developing nervous system. Recent studies have begun to reveal molecular events underlying developmental control of axon-glia recognition. In our previous work, we showed that the transmembrane protein Borderless (Bdl) is specifically expressed in wrapping glia (WG), and is required for the extension of glial processes and the ensheathment of photoreceptor axons in the developing Drosophila visual system. The exact mechanism by which Bdl mediates axon-glia recognition, however, remains unknown. Here, we present evidence showing that Bdl interacts with the Ig transmembrane protein Turtle (Tutl). Tutl is specifically expressed in photoreceptor axons. Loss of tutl in photoreceptors, like loss of bdl in WG, disrupts glial extension and axon ensheatment. Epistasis analysis shows that Tutl interacts genetically with Bdl. Tutl interacts with Bdl in trans in cultured cells. We propose that Tutl interacts with Bdl in mediating axon-glia recognition for WG extension and axon ensheathment.
机译:为了在发育中的神经系统中建立轴突鞘,需要正确识别轴突和神经胶质过程。最近的研究已开始揭示轴突神经胶质识别发展控制的分子事件。在我们以前的工作中,我们表明跨膜蛋白无边界(Bdl)在包裹神经胶质(WG)中特异表达,并且是发展神经果蝇视觉系统中神经胶质过程的扩展和光感受器轴突的包裹所必需的。然而,Bdl介导轴突胶质识别的确切机制仍然未知。在这里,我们提供证据显示Bdl与Ig跨膜蛋白Turtle(Tutl)相互作用。 Tutl在感光轴突中特异性表达。感光细胞中的tutl的损失(如WG中bdl的损失)会破坏神经胶质扩展和轴突发炎。上位性分析表明,Tutl与Bdl具有遗传相互作用。 Tutl与Bdl在培养细胞中反式相互作用。我们建议Tutl与Bdl相互作用,介导WG延伸和轴突护套的轴突胶质识别。

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