Cables1 links Slit/Robo and Wnt/Frizzled signaling in commissural axon guidance

Nikole R. Zuñiga, E. Stoeckli
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引用次数: 0

Abstract

During neural circuit formation, axons navigate from one intermediate target to the next, until they find their final target. At intermediate targets, axons switch from being attracted to being repelled by changing the guidance receptors on the growth cone surface. For smooth navigation of the intermediate target and the continuation of their journey, the switch in receptor expression has to be orchestrated in a precisely timed manner. As an alternative to changes in expression, receptor function could be regulated by phosphorylation of receptors or components of signaling pathways. We identifed Cables1 as a linker between floor-plate exit of commissural axons regulated by Slit/Robo signaling and the rostral turn of post-crossing axons regulated by Wnt/Frizzled signaling. Cables1 localizes β-Catenin phosphorylated at tyrosine 489 by Abelson kinase to the distal axon, which in turn is necessary for the correct navigation of post-crossing commissural axons in the developing chicken spinal cord.
Cables1将Slit/Robo和Wnt/ zzzzed信号在相互连接的轴突引导中连接起来
在神经回路形成过程中,轴突从一个中间目标导航到下一个中间目标,直到它们找到最终目标。在中间靶点,轴突通过改变生长锥表面的引导受体从被吸引转向被排斥。为了中间目标的顺利导航和它们旅程的继续,受体表达的转换必须以精确的定时方式进行编排。作为表达变化的另一种选择,受体功能可以通过受体或信号通路成分的磷酸化来调节。我们发现Cables1是连接由Slit/Robo信号调节的交联轴突的底板出口和由Wnt/Frizzled信号调节的交联轴突的吻侧转向。Cables1将酪氨酸489位点被Abelson激酶磷酸化的β-Catenin定位到远端轴突,这反过来对发育中的鸡脊髓中交叉后的交联轴突的正确导航是必要的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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