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首页> 外文期刊>Genes and Development: a Journal Devoted to the Molecular Analysis of Gene Expression in Eukaryotes, Prokaryotes, and Viruses >Genetic rescue of Muenke syndrome model hearing loss reveals prolonged FGF-dependent plasticity in cochlear supporting cell fates
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Genetic rescue of Muenke syndrome model hearing loss reveals prolonged FGF-dependent plasticity in cochlear supporting cell fates

机译:Muenke综合征模型听力损失的遗传挽救揭示了耳蜗支持细胞命运中FGF依赖的可塑性延长

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The stereotyped arrangement of cochlear sensory and supporting cells is critical for auditory function. Our previous studies showed that Muenke syndrome model mice (Fgfr3P244R/+) have hearing loss associated with a supporting cell fate transformation of two Deiters' cells to two pillar cells. We investigated the developmental origins of this transformation and found that two prospective Deiters' cells switch to an outer pillar cell-like fate sequentially between embryonic day 17.5 (E17.5) and postnatal day 3 (P3). Unexpectedly, the Fgfr3P244R/+ hearing loss and supporting cell fate transformation are not rescued by genetically reducing fibroblast growth factor 8 (FGF8), the FGF receptor 3c (FGFR3c) ligand required for pillar cell differentiation. Rather, reducing FGF10, which normally activates FGFR2b or FGFR1b, is sufficient for rescue of cochlear form and function. Accordingly, we found that the P244R mutation changes the specificity of FGFR3b and FGFR3c such that both acquire responsiveness to FGF10. Moreover, Fgf10 heterozygosity does not block the Fgfr3P244R/+ supporting cell fate transformation but instead allows a gradual reversion of fate-switched cells toward the normal phenotype between P5 and at least P14. This study indicates that Deiters' and pillar cells can reversibly switch fates in an FGFdependent manner over a prolonged period of time. This property might be exploited for the regulation of sensory cell regeneration from support cells.
机译:耳蜗感觉和支持细胞的定型排列对于听觉功能至关重要。我们以前的研究表明,Muenke综合征模型小鼠(Fgfr3P244R / +)的听力丧失与两个Deiters'细胞向两个支柱细胞的支持性细胞命运转化有关。我们调查了这种转化的起源,发现两个预期的Deiters细胞在胚胎第17.5天(E17.5)和出生后第3天(P3)之间相继切换到外部柱状细胞样的命运。出乎意料的是,通过遗传还原成纤维细胞生长因子8(FGF8),即支柱细胞分化所需的FGF受体3c(FGFR3c)配体,无法挽救Fgfr3P244R / +听力损失和支持细胞命运的转变。相反,还原正常激活FGFR2b或FGFR1b的FGF10足以挽救耳蜗的形式和功能。因此,我们发现P244R突变改变了FGFR3b和FGFR3c的特异性,从而都获得了对FGF10的响应性。此外,Fgf10杂合性不阻止Fgfr3P244R / +支持细胞命运的转化,而是允许命运转换的细胞逐渐回复到P5和至少P14之间的正常表型。这项研究表明,Deiters细胞和柱状细胞可以长时间以FGF依赖的方式可逆地转换命运。此特性可用于调节支持细胞的感觉细胞再生。

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