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P2X receptor signaling inhibits BDNF-mediated spiral ganglion neuron development in the neonatal rat cochlea.

机译:P2X受体信号传导抑制新生大鼠耳蜗中BDNF介导的螺旋神经节神经元的发育。

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摘要

Type I and type II spiral ganglion neurons (SGN) innervate the inner and outer hair cells of the cochlea, respectively. This neural system is established by reorganization of promiscuous innervation of the hair cells, immediately before hearing is established. The mechanism for this synaptic reorganization is unresolved but probably includes regulation of trophic support between the hair cells and the neurons. We provide evidence that P2X receptors (ATP-gated ion channels) contribute such a mechanism in the neonatal rat cochlea. Single-cell quantitative RT-PCR identified the differential expression of two P2X receptor subunits, splice variant P2X(2)(-3) and P2X(3), in a 1:2 transcript ratio. Downregulation of this P2X(2-3/3) receptor coincided with maturation of the SGN innervation of the hair cells. When the P2X(2-3) and P2X(3) subunits were co-expressed in Xenopus oocytes, the resultant P2X receptor properties corresponded to the SGN phenotype. This included enhanced sensitivity to ATP and extended agonist action. In P4 spiral ganglion explants, activation of the P2X receptor signaling pathway by ATPgammaS or alpha,betaMeATP inhibited BDNF-induced neurite outgrowth and branching. These findings indicate that P2X receptor signaling provides a mechanism for inhibiting neurotrophin support of SGN neurites when synaptic reorganization is occurring in the cochlea.
机译:I型和II型螺旋神经节神经元(SGN)分别支配着耳蜗的内部和外部毛细胞。即将建立听力之前,通过重组毛细胞的神经支配来建立该神经系统。这种突触重组的机制尚未解决,但可能包括调节毛细胞和神经元之间的营养支持。我们提供的证据表明,P2X受体(ATP门控离子通道)在新生大鼠耳蜗中贡献了这种机制。单细胞定量RT-PCR鉴定了两个P2X受体亚基,剪接变体P2X(2)(-3)和P2X(3)的差异表达,转录比例为1:2。这种P2X(2-3 / 3)受体的下调与毛细胞SGN神经支配的成熟相吻合。当在非洲爪蟾卵母细胞中共表达P2X(2-3)和P2X(3)亚基时,所得的P2X受体特性与SGN表型相对应。这包括增强了对ATP的敏感性和延长的激动剂作用。在P4螺旋神经节外植体中,ATPgammaS或alpha,betaMeATP激活P2X受体信号通路抑制了BDNF诱导的神经突向外生长和分支。这些发现表明,当耳蜗中发生突触重组时,P2X受体信号提供了一种抑制SGN神经突神经营养蛋白支持的机制。

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