Department of Biological Sciences, Western Michigan University, Kalamazoo, MI, USA.
Department of Biology, University of Iowa, Iowa City, IA, USA.
Sci Rep. 2019 Jul 16;9(1):10298. doi: 10.1038/s41598-019-46553-6.
Inner ear sensory afferent connections establish sensory maps between the inner ear hair cells and the vestibular and auditory nuclei to allow vestibular and sound information processing. While molecular guidance of sensory afferents to the periphery has been well studied, molecular guidance of central projections from the ear is only beginning to emerge. Disorganized central projections of spiral ganglion neurons in a Wnt/PCP pathway mutant, Prickle1, suggest the Wnt/PCP pathway plays a role in guiding cochlear afferents to the cochlear nuclei in the hindbrain, consistent with known expression of the Wnt receptor, Frizzled3 (Fzd3) in inner ear neurons. We therefore investigated the role of Wnt signaling in central pathfinding in Fzd3 mutant mice and Fzd3 morpholino treated frogs and found aberrant central projections of vestibular afferents in both cases. Ear transplantations from knockdown to control Xenopus showed that it is the Fzd3 expressed within the ear that mediates this guidance. Also, cochlear afferents of Fzd3 mutant mice lack the orderly topological organization observed in controls. Quantification of Fzd3 expression in spiral ganglion neurons show a gradient of expression with Fzd3 being higher in the apex than in the base. Together, these results suggest that a gradient of Fzd3 in inner ear afferents directs projections to the correct dorsoventral column within the hindbrain.
内耳感觉传入连接在内耳毛细胞和前庭及听觉核之间建立感觉图谱,以允许前庭和声音信息处理。虽然感觉传入的分子导向在外周已经得到很好的研究,但来自耳朵的中枢投射的分子导向才刚刚开始出现。Wnt/PCP 途径突变体 Prickle1 中的螺旋神经节神经元的中央投射紊乱表明 Wnt/PCP 途径在引导耳蜗传入纤维到后脑的耳蜗核中起作用,这与已知的 Wnt 受体 Frizzled3 (Fzd3) 在内耳神经元中的表达一致。因此,我们研究了 Wnt 信号在 Fzd3 突变小鼠和 Fzd3 形态发生素处理的青蛙中的中枢寻径中的作用,发现这两种情况下前庭传入纤维的中央投射都异常。从 knockdown 到对照 Xenopus 的耳部移植表明,介导这种导向的是在耳部内表达的 Fzd3。此外,Fzd3 突变小鼠的耳蜗传入纤维缺乏在对照中观察到的有序拓扑组织。对螺旋神经节神经元中 Fzd3 表达的定量分析显示,Fzd3 的表达呈梯度分布,在顶端比在基部更高。综上所述,这些结果表明,内耳传入纤维中的 Fzd3 梯度指导投射到后脑中正确的背腹柱。