Laboratory of Cochlear Development, National Institute on Deafness and Other Communication Disorders, National Institutes of Health, Bethesda, MD 20892, USA.
Neuron. 2012 Jan 12;73(1):49-63. doi: 10.1016/j.neuron.2011.10.029.
Peripheral axons from auditory spiral ganglion neurons (SGNs) form an elaborate series of radially and spirally oriented projections that interpret complex aspects of the auditory environment. However, the developmental processes that shape these axon tracts are largely unknown. Radial bundles are comprised of dense SGN fascicles that project through otic mesenchyme to form synapses within the cochlea. Here, we show that radial bundle fasciculation and synapse formation are disrupted when Pou3f4 (DFNX2) is deleted from otic mesenchyme. Further, we demonstrate that Pou3f4 binds to and directly regulates expression of Epha4, Epha4⁻/⁻ mice present similar SGN defects, and exogenous EphA4 promotes SGN fasciculation in the absence of Pou3f4. Finally, Efnb2 deletion in SGNs leads to similar fasciculation defects, suggesting that ephrin-B2/EphA4 interactions are critical during this process. These results indicate a model whereby Pou3f4 in the otic mesenchyme establishes an Eph/ephrin-mediated fasciculation signal that promotes inner radial bundle formation.
听觉螺旋神经节神经元(SGN)的周围轴突形成了一系列复杂的放射状和螺旋状的投射,这些投射解释了听觉环境的复杂方面。然而,这些轴突束的发育过程在很大程度上是未知的。放射束由密集的 SGN 束组成,它们穿过耳基质投射,在耳蜗内形成突触。在这里,我们表明,当 Pou3f4(DFNX2)从耳基质中缺失时,放射束的聚集和突触的形成会受到干扰。此外,我们证明 Pou3f4 结合并直接调节 EphA4 的表达,Epha4-/- 小鼠表现出类似的 SGN 缺陷,而外源性 EphA4 在缺乏 Pou3f4 的情况下促进 SGN 的聚集。最后,SGN 中的 Efnb2 缺失导致类似的聚集缺陷,表明 ephrin-B2/EphA4 相互作用在这个过程中是至关重要的。这些结果表明了一个模型,即耳基质中的 Pou3f4 建立了 Eph/ephrin 介导的聚集信号,促进了内放射束的形成。