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Heterotrimeric Go protein links Wnt-Frizzled signaling with ankyrins to regulate the neuronal microtubule cytoskeleton.

机译:异三聚体Go蛋白将Wnt-Frizzled信号与锚蛋白连接起来,以调节神经元微管细胞骨架。

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摘要

Drosophila neuromuscular junctions (NMJs) represent a powerful model system with which to study glutamatergic synapse formation and remodeling. Several proteins have been implicated in these processes, including components of canonical Wingless (Drosophila Wnt1) signaling and the giant isoforms of the membrane-cytoskeleton linker Ankyrin 2, but possible interconnections and cooperation between these proteins were unknown. Here, we demonstrate that the heterotrimeric G protein Go functions as a transducer of Wingless-Frizzled 2 signaling in the synapse. We identify Ankyrin 2 as a target of Go signaling required for NMJ formation. Moreover, the Go-ankyrin interaction is conserved in the mammalian neurite outgrowth pathway. Without ankyrins, a major switch in the Go-induced neuronal cytoskeleton program is observed, from microtubule-dependent neurite outgrowth to actin-dependent lamellopodial induction. These findings describe a novel mechanism regulating the microtubule cytoskeleton in the nervous system. Our work in Drosophila and mammalian cells suggests that this mechanism might be generally applicable in nervous system development and function.
机译:果蝇神经肌肉接头(NMJs)代表了一个强大的模型系统,可用于研究谷氨酸能突触的形成和重塑。在这些过程中涉及了几种蛋白质,包括经典的Wingless(果蝇Wnt1)信号传导的成分和膜-细胞骨架连接子锚蛋白2的巨大同工型,但这些蛋白质之间可能的相互连接和协同作用尚不清楚。在这里,我们证明异三聚体G蛋白Go充当突触中Wingless-Frizzled 2信号转导的换能器。我们确定锚蛋白2作为NMJ形成所需的Go信号转导的目标。此外,Go-锚蛋白相互作用在哺乳动物神经突生长途径中是保守的。没有锚蛋白,可以观察到Go诱导的神经元细胞骨架程序发生了重大转变,从微管依赖性神经突增生到肌动蛋白依赖性椎间盘诱导。这些发现描述了调节神经系统中微管细胞骨架的新机制。我们在果蝇和哺乳动物细胞中的研究表明,这种机制可能普遍适用于神经系统的发育和功能。

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