首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Cross GTPase-activating protein (CrossGAP)/Vilse links the Roundabout receptor to Rac to regulate midline repulsion
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Cross GTPase-activating protein (CrossGAP)/Vilse links the Roundabout receptor to Rac to regulate midline repulsion

机译:交叉GTPase激活蛋白(CrossGAP)/ Vilse将回旋处受体与Rac连接以调节中线排斥

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摘要

The regulators of the Rho-family GTPases, GTPase-activating proteins (GAPs) and guanine exchange factors (GEFs), play important roles in axon guidance. By means of a functional genomic study of the Rho-family GEFs and GAPs in Drosophila, we have identified a Rho-family GAP, CrossGAP (CrGAP), which is involved in Roundabout (Robo) receptor-mediated repulsive axon guidance. CrGAP physically associates with the Robo receptor. Too much or too little CrGAP activity leads to defects in Robo-mediated repulsion at the midline choice point. The CrGAP gain-of-function phenotype mimics the loss-of-function phenotypes of both Robo and Rac. Dosage-sensitive genetic interactions among CrGAP, Robo, and Rac support a model in which CrGAP transduces signals downstream of Robo receptor to regulate Rac-dependent cytoskeletal changes.
机译:Rho家族GTPases,GTPase激活蛋白(GAP)和鸟嘌呤交换因子(GEF)的调节剂在轴突导向中起重要作用。通过对果蝇Rho家族GEF和GAP进行功能基因组研究,我们确定了Rho家族GAP CrossGAP(CrGAP),它参与回旋(Robo)受体介导的排斥轴突指导。 CrGAP与Robo受体物理结合。 CrGAP活性过多或过少都会导致中线选择点Robo介导的排斥力缺陷。 CrGAP功能获得表型模仿Robo和Rac的功能丧失表型。 CrGAP,Robo和Rac之间的剂量敏感性遗传相互作用支持了一个模型,其中CrGAP在Robo受体下游转导信号以调节Rac依赖性细胞骨架的变化。

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