首页> 美国卫生研究院文献>The Journal of Neuroscience >Connexin-Mediated Signaling in Nonsensory Cells Is Crucial for the Development of Sensory Inner Hair Cells in the Mouse Cochlea
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Connexin-Mediated Signaling in Nonsensory Cells Is Crucial for the Development of Sensory Inner Hair Cells in the Mouse Cochlea

机译:连接蛋白介导的非感觉细胞信号对于小鼠耳蜗感觉内毛细胞的发展至关重要。

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摘要

Mutations in the genes encoding for gap junction proteins connexin 26 (Cx26) and connexin 30 (Cx30) have been linked to syndromic and nonsyndromic hearing loss in mice and humans. The release of ATP from connexin hemichannels in cochlear nonsensory cells has been proposed to be the main trigger for action potential activity in immature sensory inner hair cells (IHCs), which is crucial for the refinement of the developing auditory circuitry. Using connexin knock-out mice, we show that IHCs fire spontaneous action potentials even in the absence of ATP-dependent intercellular Ca2+ signaling in the nonsensory cells. However, this signaling from nonsensory cells was able to increase the intrinsic IHC firing frequency. We also found that connexin expression is key to IHC functional maturation. In Cx26 conditional knock-out mice (Cx26Sox10-Cre), the maturation of IHCs, which normally occurs at approximately postnatal day 12, was partially prevented. Although Cx30 has been shown not to be required for hearing in young adult mice, IHCs from Cx30 knock-out mice exhibited a comprehensive brake in their development, such that their basolateral membrane currents and synaptic machinery retain a prehearing phenotype. We propose that IHC functional differentiation into mature sensory receptors is initiated in the prehearing cochlea provided that the expression of either connexin reaches a threshold level. As such, connexins regulate one of the most crucial functional refinements in the mammalian cochlea, the disruption of which contributes to the deafness phenotype observed in mice and DFNB1 patients.>SIGNIFICANCE STATEMENT The correct development and function of the mammalian cochlea relies not only on the sensory hair cells, but also on the surrounding nonsensory cells. Although the nonsensory cells have been largely implicated in the general homeostasis in the mature cochlea, their involvement in the initial functional differentiation of the sensory inner hair cells is less clear. Using mutant mouse models for the most common form of congenital deafness in humans, which are knock-outs for the gap-junction channels connexin 26 and connexin 30 genes, we show that defects in nonsensory cells prevented the functional maturation of inner hair cells. In connexin knock-outs, inner hair cells remained stuck at a prehearing stage of development and, as such, are unable to process sound information.
机译:编码间隙连接蛋白连接蛋白26(Cx26)和连接蛋白30(Cx30)的基因突变与小鼠和人类的综合征和非综合征性听力损失有关。已提出从耳蜗非感觉细胞中的连接蛋白半通道释放ATP是未成熟感觉内毛细胞(IHC)中动作电位活性的主要触发因素,这对发育中的听觉回路至关重要。使用连接蛋白敲除小鼠,我们表明,即使在非感觉细胞中不存在依赖ATP的细胞间Ca 2 + 信号传导,IHC也会激发自发动作电位。然而,来自非感觉细胞的这种信号传递能够增加固有的IHC激发频率。我们还发现连接蛋白表达是IHC功能成熟的关键。在Cx26条件性基因敲除小鼠(Cx26 Sox10-Cre )中,通常在出生后大约第12天发生的IHC成熟被部分阻止。尽管已显示不需要Cx30在年轻的成年小鼠中进行听力训练,但来自Cx30基因敲除小鼠的IHC在其发育过程中表现出了全面的制动作用,因此它们的基底外侧膜电流和突触机械保持了预听力表型。我们建议,只要连接蛋白的表达达到阈值水平,就可以在听力前的耳蜗中启动将IHC分化为成熟的感觉受体的功能。因此,连接蛋白调节着哺乳动物耳蜗中最关键的功能改良之一,其破坏导致了在小鼠和DFNB1患者中观察到的耳聋表型。>意义声明,哺乳动物的正确发育和功能耳蜗不仅依赖于感觉毛细胞,而且还依赖于周围的非感觉细胞。尽管非感觉细胞在很大程度上涉及成熟的耳蜗的一般稳态,但是它们对感觉内部毛细胞的初始功能分化的参与尚不清楚。使用人类中最常见形式的先天性耳聋的突变小鼠模型,即间隙连接通道连接蛋白26和连接蛋白30基因的敲除,我们表明非感觉细胞的缺陷阻止了内毛细胞的功能成熟。在连接蛋白敲除中,内部毛细胞在发展的预听阶段仍然停留,因此无法处理声音信息。

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