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首页> 外文期刊>Cell Reports >Hox2 Genes Are Required for Tonotopic Map Precision and Sound Discrimination in the Mouse Auditory Brainstem
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Hox2 Genes Are Required for Tonotopic Map Precision and Sound Discrimination in the Mouse Auditory Brainstem

机译:Hox2基因对于小鼠听觉脑干中的音位图精确度和声音识别是必需的

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Tonotopy is a hallmark of auditory pathways and provides the basis for sound discrimination. Little is known about the involvement of transcription factors in brainstem cochlear neurons orchestrating the tonotopic precision of pre-synaptic input. We found that in the absence of Hoxa2 and Hoxb2 function in Atoh1-derived glutamatergic bushy cells of the anterior ventral cochlear nucleus, broad input topography and sound transmission were largely preserved. However, fine-scale synaptic refinement and sharpening of isofrequency bands of cochlear neuron activation upon pure tone stimulation were impaired in Hox2 mutants, resulting in defective sound-frequency discrimination in behavioral tests. These results establish a role for Hox factors in tonotopic refinement of connectivity and in ensuring the precision of sound transmission in the mammalian auditory circuit.
机译:拟声体是听觉通路的标志,并为声音辨别提供了基础。关于转录因子参与协调突触前输入的断层精确度的脑干耳蜗神经元的了解甚少。我们发现,在前腹蜗前核的Atoh1来源的谷氨酸能丛细胞中没有Hoxa2和Hoxb2功能的情况下,很大程度上保留了宽输入拓扑结构和声音传输。但是,在Hox2突变体中,纯音刺激后,小规模的突触精细化和耳蜗神经元激活的等频带的锐化受到损害,从而导致行为测试中存在有缺陷的声频辨别力。这些结果确立了Hox因子在连通性的局部优化和确保哺乳动物听觉回路中声音传输精度方面的作用。

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