首页> 外文期刊>Neuron >Slit stimulation recruits Dock and Pak to the roundabout receptor and increases Rac activity to regulate axon repulsion at the CNS midline.
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Slit stimulation recruits Dock and Pak to the roundabout receptor and increases Rac activity to regulate axon repulsion at the CNS midline.

机译:狭缝刺激将Dock和Pak吸收到环岛受体上,并增加Rac活性以调节CNS中线的轴突排斥力。

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摘要

Drosophila Roundabout (Robo) is the founding member of a conserved family of repulsive axon guidance receptors that respond to secreted Slit proteins. Here we present evidence that the SH3-SH2 adaptor protein Dreadlocks (Dock), the p21-activated serine-threonine kinase (Pak), and the Rac1/Rac2/Mtl small GTPases can function during Robo repulsion. Loss-of-function and genetic interaction experiments suggest that limiting the function of Dock, Pak, or Rac partially disrupts Robo repulsion. In addition, Dock can directly bind to Robo's cytoplasmic domain, and the association of Dock and Robo is enhanced by stimulation with Slit. Furthermore, Slit stimulation can recruit a complex of Dock and Pak to the Robo receptor and trigger an increase in Rac1 activity. These results provide a direct physical link between the Robo receptor and an important cytoskeletal regulatory protein complex and suggest that Rac can function in both attractive and repulsive axon guidance.
机译:果蝇回旋处(Robo)是保守的排斥轴突引导受体家族的创始成员,该受体可响应分泌的Slit蛋白。在这里,我们提供证据证明SH3-SH2衔接蛋白Dreadlocks(Dock),p21激活的丝氨酸-苏氨酸激酶(Pak)和Rac1 / Rac2 / Mtl小GTPases可以在Robo排斥过程中起作用。功能丧失和遗传相互作用实验表明,限制Dock,Pak或Rac的功能会部分破坏Robo排斥力。此外,Dock可以直接结合到Robo的胞质结构域,并且通过Slit刺激可以增强Dock与Robo的关联。此外,狭缝刺激可以将Dock和Pak的复合物募集到Robo受体,并触发Rac1活性的增加。这些结果提供了Robo受体和重要的细胞骨架调节蛋白复合物之间的直接物理联系,并表明Rac可以在有吸引力和排斥轴突指导中发挥作用。

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