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Regulation of axonal growth and neuromuscular junction formation by neuronal phosphatase and tensin homologue signaling

机译:神经元磷酸酶和张力蛋白同源信号传导对轴突生长和神经肌肉接头形成的调节

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摘要

During the development of the vertebrate neuromuscular junction (NMJ), motor axon tips stop growing after contacting muscle and transform into presynaptic terminals that secrete the neurotransmitter acetylcholine and activate postsynaptic ACh receptors (AChRs) to trigger muscle contraction. The neuron-intrinsic signaling that retards axonal growth to facilitate stable nerve–muscle interaction and synaptogenesis is poorly understood. In this paper, we report a novel function of presynaptic signaling by phosphatase and tensin homologue (PTEN) in mediating a growth-to-synaptogenesis transition in neurons. In Xenopus nerve–muscle cocultures, axonal growth speed was halved after contact with muscle, when compared with before contact, but when cultures were exposed to the PTEN blocker bisperoxo (1,10-phenanthroline) oxovanadate, axons touching muscle grew ∼50% faster than their counterparts in control cultures. Suppression of neuronal PTEN expression using morpholinos or the forced expression of catalytically inactive PTEN in neurons also resulted in faster than normal axonal advance after contact with muscle cells. Significantly, interference with PTEN by each of these methods also led to reduced AChR clustering at innervation sites in muscle, indicating that disruption of neuronal PTEN signaling inhibited NMJ assembly. We thus propose that PTEN-dependent slowing of axonal growth enables the establishment of stable nerve–muscle contacts that develop into NMJs.
机译:在脊椎动物神经肌肉接头(NMJ)的发育过程中,运动轴突尖端在接触肌肉后停止生长,并转变成突触前末端,后者分泌神经递质乙酰胆碱并激活突触后ACh受体(AChRs)以触发肌肉收缩。阻碍轴突生长以促进稳定的神经-肌肉相互作用和突触形成的神经元内源性信号知之甚少。在本文中,我们报道了由磷酸酶和张力蛋白同源物(PTEN)介导的突触前信号转导在神经元的生长到突触形成过渡的新功能。在非洲爪蟾的神经-肌肉共培养物中,与接触前相比,接触肌肉后轴突的生长速度减半,但是当将培养物暴露于PTEN阻断剂双氧嘧啶(1,10-菲咯啉)氧钒酸盐时,接触肌肉的轴突增长约50%。比控制文化中的同行要高。使用吗啉代蛋白抑制神经元PTEN表达或在神经元中强迫表达非催化活性PTEN的结果也导致与肌肉细胞接触后轴突的进展快于正常情况。值得注意的是,每种方法对PTEN的干扰也导致肌肉中神经支配位点的AChR聚集减少,表明神经元PTEN信号的破坏抑制了NMJ装配。因此,我们提出,依赖PTEN的轴突生长减慢能够建立稳定的神经肌肉接触,并发展为NMJ。

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