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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >alpha 2-Chimaerin Is Required for Eph Receptor-Class-Specific Spinal Motor Axon Guidance and Coordinate Activation of Antagonistic Muscles
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alpha 2-Chimaerin Is Required for Eph Receptor-Class-Specific Spinal Motor Axon Guidance and Coordinate Activation of Antagonistic Muscles

机译:Epha 2-Chimaerin是Eph受体类特异性脊柱电机轴突和拮抗肌肉的坐标激活所必需的

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摘要

Axonal guidance involves extrinsic molecular cues that bind growth cone receptors and signal to the cytoskeleton through divergent pathways. Some signaling intermediates are deployed downstream of molecularly distinct axon guidance receptor families, but the scope of this overlap is unclear, as is the impact of embryonic axon guidance fidelity on adult nervous system function. Here, we demonstrate that the Rho-GTPase-activating protein alpha 2-chimaerin is specifically required for EphA and not EphB receptor signaling in mouse and chick spinal motor axons. Reflecting this specificity, the loss of alpha 2-chimaerin function disrupts the limb trajectory of extensor-muscle-innervating motor axons the guidance of which depends on EphA signaling. These embryonic defects affect coordinated contraction of antagonistic flexor-extensor muscles in the adult, indicating that accurate embryonic motor axon guidance is critical for optimal neuromuscular function. Together, our observations provide the first functional evidence of an Eph receptor-class-specific intracellular signaling protein that is required for appropriate neuromuscular connectivity.
机译:轴突引导涉及通过发散途径将生长锥受体和信号与细胞骨架的外在分子提示。一些信号中间体在分子明显的轴突引导受体家族的下游部署,但这种重叠的范围尚不清楚,因为胚胎轴突引导保真度对成年神经系统功能的影响。在此,我们证明了epha的rho-gtpase-is-活化蛋白α2-乳蛋白,并且在小鼠和小鼠脊柱马达轴突中特别需要Ephb受体信号传导。反映这种特异性,α2-chimaerin函数的损失破坏了伸肌支配电动机轴突的肢体轨迹,其引导取决于epha信号传导。这些胚胎缺陷会影响成人抗抗动屈肌肌肌的协调收缩,表明精确的胚胎电机轴突引导对于最佳神经肌肉功能至关重要。我们的观察结果一起提供了适当的神经肌肉连通性所需的Eph受体类特异性细胞内信号蛋白的第一功能证据。

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