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MAP7 regulates axon morphogenesis by recruiting kinesin-1 to microtubules and modulating organelle transport

机译:MAP7通过将kinesin-1募集到微管和调节细胞器运输来调节轴突形态发生。

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摘要

Neuronal cell morphogenesis depends on proper regulation of microtubule-based transport, but the underlying mechanisms are not well understood. Here, we report our study of MAP7, a unique microtubule-associated protein that interacts with both microtubules and the motor protein kinesin-1. Structure-function analysis in rat embryonic sensory neurons shows that the kinesin-1 interacting domain in MAP7 is required for axon and branch growth but not for branch formation. Also, two unique microtubule binding sites are found in MAP7 that have distinct dissociation kinetics and are both required for branch formation. Furthermore, MAP7 recruits kinesin-1 dynamically to microtubules, leading to alterations in organelle transport behaviors, particularly pause/speed switching. As MAP7 is localized to branch sites, our results suggest a novel mechanism mediated by the dual interactions of MAP7 with microtubules and kinesin-1 in the precise control of microtubule-based transport during axon morphogenesis.
机译:神经元细胞的形态发生取决于基于微管的运输的适当调节,但其潜在的机制尚不清楚。在这里,我们报告我们对MAP7的研究,MAP7是与微管和运动蛋白kinesin-1相互作用的独特微管相关蛋白。大鼠胚胎感觉神经元的结构功能分析表明,MAP7中的kinesin-1相互作用域是轴突和分支生长所必需的,而不是分支形成所必需的。此外,在MAP7中发现了两个独特的微管结合位点,它们具有独特的解离动力学,并且都是分支形成所必需的。此外,MAP7动态地将驱动蛋白1募集到微管中,从而导致细胞器运输行为的改变,特别是暂停/速度切换。由于MAP7定位于分支位点,我们的研究结果提出了由MAP7与微管和kinesin-1的双重相互作用介导的新型机制,可在轴突形态发生过程中精确控制基于微管的转运。

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