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Alternative splicing of the Robo3 axon guidance receptor governs the midline switch from attraction to repulsion.

机译:Robo3轴突导向受体的可变剪接控制着中线从吸引到排斥的转换。

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Alternative splicing provides a means to increase the complexity of gene function in numerous biological processes, including nervous system wiring. Navigating axons switch responses from attraction to repulsion at intermediate targets, allowing them to grow to each intermediate target and then to move on. The mechanisms underlying this switch remain poorly characterized. We previously showed that the Slit receptor Robo3 is required for spinal commissural axons to enter and cross the midline intermediate target. We report here the existence of two functionally antagonistic isoforms of Robo3 with distinct carboxy termini arising from alternative splicing. Robo3.1 is deployed on the precrossing and crossing portions of commissural axons and allows midline crossing by silencing Slit repulsion. Robo3.2 becomes expressed on the postcrossing portion and blocks midline recrossing, favoring Slit repulsion. The tight spatial regulation of opponent splice variants helps ensure high-fidelity transition of axonal responses from attraction to repulsion at the midline.
机译:选择性剪接提供了一种在许多生物过程中增加基因功能复杂性的方法,包括神经系统接线。导航轴突将中间目标的响应从吸引切换为排斥,使它们成长为每个中间目标,然后继续前进。该开关所依据的机制仍然欠佳。我们先前显示,Slit受体Robo3是脊椎连合轴突进入并越过中线中间目标所必需的。我们在这里报告Robo3的两个功能拮抗同工型的存在与替代拼接产生不同的羧基末端。 Robo3.1部署在连合轴突的预交叉和交叉部分,并通过使狭缝排斥力沉默来进行中线交叉。 Robo3.2在后交部分上表达,并阻止中线交叉,有利于狭缝排斥。对手剪接变体的严格空间调节有助于确保中线的轴突响应从吸引到排斥的高保真过渡。

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