首页> 美国卫生研究院文献>The Journal of Neuroscience >Dual Branch-Promoting and Branch-Repelling Actions of Slit/Robo Signaling on Peripheral and Central Branches of Developing Sensory Axons
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Dual Branch-Promoting and Branch-Repelling Actions of Slit/Robo Signaling on Peripheral and Central Branches of Developing Sensory Axons

机译:缝隙/机器人信号对发育中的感觉轴突的外围和中央分支的双重分支促进和排斥作用。

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摘要

Secreted Slit proteins signal through Robo receptors and negatively regulate axon guidance and cell migration, but in vertebrates, Slit proteins can also stimulate branching and elongation of sensory axons and cortical dendrites in vitro. Here, we show that this branching activity is required for developing peripheral sensory arbors in vivo, because trigeminal sensory branching above the eye is reduced in Slit2;Slit3 double or Slit1,2,3 triple mutants. A similar phenotype is observed in Robo1;Robo2 double mutants, implicating Robo receptors in mediating this activity. Interestingly, by studying the central projection of sensory neurons in the spinal cord, we discovered that Slit ligands are also required for proper guidance of sensory branches during bifurcation but through a different cellular mechanism. In Slit1;Slit2 or Robo1;Robo2 double mutant mice, sensory axons enter the spinal cord prematurely because of the loss of an inhibitory guidance function on one of the daughter branches of each afferent during bifurcation. Together, our studies reveal that Slit/Robo signaling contributes to patterning both the peripheral and central branches of sensory neurons but via distinct positive branching and negative guidance actions, respectively.
机译:分泌的Slit蛋白通过Robo受体发出信号并负面调节轴突的导向和细胞迁移,但在脊椎动物中,Slit蛋白还可以在体外刺激感觉轴突和皮质树突的分支和伸长。在这里,我们表明,这种分支活性是体内发展周边感觉乔木所必需的,因为在Slit2; Slit3 double或Slit1,2,3 Triple突变体中,眼睛上方的三叉神经感觉分支减少了。在Robo1; Robo2双重突变体中观察到相似的表型,暗示Robo受体介导了这种活性。有趣的是,通过研究脊髓中感觉神经元的中心投射,我们发现狭缝配体也是分叉期间通过不同细胞机制正确引导感觉分支所必需的。在Slit1,Slit2或Robo1,Robo2双突变小鼠中,由于在分叉过程中每个传入子链之一的抑制性导向功能丧失,感觉轴突过早进入脊髓。总之,我们的研究表明,Slit / Robo信号传导有助于分别形成感觉神经元的外周分支和中央分支,但分别通过独特的正分支和负指导作用。

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