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首页> 外文期刊>BMC Developmental Biology >PLCγ-activated signalling is essential for TrkB mediated sensory neuron structural plasticity
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PLCγ-activated signalling is essential for TrkB mediated sensory neuron structural plasticity

机译:PLCγ激活的信号对于TrkB介导的感觉神经元结构可塑性至关重要

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Background The vestibular system provides the primary input of our sense of balance and spatial orientation. Dysfunction of the vestibular system can severely affect a person's quality of life. Therefore, understanding the molecular basis of vestibular neuron survival, maintenance, and innervation of the target sensory epithelia is fundamental. Results Here we report that a point mutation at the phospholipase Cγ (PLCγ) docking site in the mouse neurotrophin tyrosine kinase receptor TrkB (Ntrk2) specifically impairs fiber guidance inside the vestibular sensory epithelia, but has limited effects on the survival of vestibular sensory neurons and growth of afferent processes toward the sensory epithelia. We also show that expression of the TRPC3 cation calcium channel, whose activity is known to be required for nerve-growth cone guidance induced by brain-derived neurotrophic factor (BDNF), is altered in these animals. In addition, we find that absence of the PLCγ mediated TrkB signalling interferes with the transformation of bouton type afferent terminals of vestibular dendrites into calyces (the largest synaptic contact of dendrites known in the mammalian nervous system) on type I vestibular hair cells; the latter are normally distributed in these mutants as revealed by an unaltered expression pattern of the potassium channel KCNQ4 in these cells. Conclusions These results demonstrate a crucial involvement of the TrkB/PLCγ-mediated intracellular signalling in structural aspects of sensory neuron plasticity.
机译:背景技术前庭系统为我们的平衡感和空间取向提供了主要的输入。前庭系统功能障碍会严重影响一个人的生活质量。因此,了解前庭神经元生存,维持和目标感觉上皮神经支配的分子基础是基础。结果在这里我们报道了小鼠神经营养蛋白酪氨酸激酶受体TrkB(Ntrk2)中磷脂酶Cγ(PLCγ)停靠位点的点突变特别损害前庭感觉上皮细胞内的纤维引导,但对前庭感觉神经元和感觉上皮的传入过程的增长。我们还显示,在这些动物中,改变了TRPC3阳离子钙通道的表达,该通道的活性已知是由脑源性神经营养因子(BDNF)诱导的神经生长锥引导所必需的。此外,我们发现PLCγ介导的TrkB信号的缺乏会干扰I型前庭毛细胞的前庭树突的bouton型传入末端转化为花萼(在哺乳动物神经系统中已知的最大树突突触)。后者通常分布在这些突变体中,如钾通道KCNQ4在这些细胞中的表达模式未改变所揭示。结论这些结果表明,TrkB /PLCγ介导的细胞内信号传导在感觉神经元可塑性的结构方面至关重要。

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