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Notch 信号通路与内耳发育

Notch signaling and the developing inner ear.

机构信息

Department of Otorhinolaryngology, Junteno University School of Medicine, Tokyo, Japan.

出版信息

Adv Exp Med Biol. 2012;727:161-73. doi: 10.1007/978-1-4614-0899-4_12.

Abstract

Sensory hair cells (HCs) and their associated nonsensory supporting cells (SCs) exhibit a typical mosaic pattern in each of the sensory patches in the inner ear. Notch signaling has been considered to conduct the formation of this mosaic pattern through one of its famous functions, known as 'lateral inhibition'. The two Notch ligands Delta-like1 and Jagged2 are believed to act synergistically at the stage of cell diversification in mammals. In addition, many current studies suggest that Notch signaling has another inductive, but not inhibiting, role in the determination of the prosensory region, which precedes the cell diversification of HCs and SCs and Jagged1 is thought to be an essential ligand in this process. Earlier in ear development, the first cell fate determination begins with the delamination of the neuroblasts from the otic epithelium. The delaminated neuroblasts migrate and coalesce to form cochleovestibular ganglion. Notch signaling pathway is thought to function during the delamination through its lateral inhibitory mechanism. Recently, many experiments examining Notch-related gene expression patterns and direct functional analyses of genes have revealed multiple important functions of Notch in inner ear development. Here, we survey a series of studies and discuss the issues that remain to be elucidated in the future.

摘要

感觉毛细胞 (HCs) 和它们相关的非感觉支持细胞 (SCs) 在内耳的每个感觉斑块中表现出典型的镶嵌模式。 Notch 信号被认为通过其著名的功能之一“侧向抑制”来进行这种镶嵌模式的形成。两种 Notch 配体 Delta-like1 和 Jagged2 被认为在哺乳动物的细胞多样化阶段协同作用。此外,许多当前的研究表明,Notch 信号在 HC 和 SC 以及 Jagged1 的细胞多样化之前的前感觉区域的决定中具有另一种诱导作用,而不是抑制作用,被认为是这个过程中的一个必要配体。在耳朵发育的早期,第一个细胞命运决定始于神经母细胞从耳上皮的分层。分层的神经母细胞迁移并融合形成耳蜗前庭神经节。 Notch 信号通路被认为通过其侧向抑制机制在分层过程中起作用。最近,许多检查 Notch 相关基因表达模式的实验和基因的直接功能分析揭示了 Notch 在内耳发育中的多种重要功能。在这里,我们调查了一系列研究,并讨论了未来仍需要阐明的问题。

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