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内耳感觉发育需要Notch配体Jagged1。

The Notch ligand Jagged1 is required for inner ear sensory development.

作者信息

Kiernan A E, Ahituv N, Fuchs H, Balling R, Avraham K B, Steel K P, Hrabé de Angelis M

机构信息

Medical Research Council Institute of Hearing Research, University Park, Nottingham NG7 2RD, United Kingdom.

出版信息

Proc Natl Acad Sci U S A. 2001 Mar 27;98(7):3873-8. doi: 10.1073/pnas.071496998. Epub 2001 Mar 20.

Abstract

Within the mammalian inner ear there are six separate sensory regions that subserve the functions of hearing and balance, although how these sensory regions become specified remains unknown. Each sensory region is populated by two cell types, the mechanosensory hair cell and the supporting cell, which are arranged in a mosaic in which each hair cell is surrounded by supporting cells. The proposed mechanism for creating the sensory mosaic is lateral inhibition mediated by the Notch signaling pathway. However, one of the Notch ligands, Jagged1 (Jag1), does not show an expression pattern wholly consistent with a role in lateral inhibition, as it marks the sensory patches from very early in their development--presumably long before cells make their final fate decisions. It has been proposed that Jag1 has a role in specifying sensory versus nonsensory epithelium within the ear [Adam, J., Myat, A., Roux, I. L., Eddison, M., Henrique, D., Ish-Horowicz, D. & Lewis, J. (1998) Development (Cambridge, U.K.) 125, 4645--4654]. Here we provide experimental evidence that Notch signaling may be involved in specifying sensory regions by showing that a dominant mouse mutant headturner (Htu) contains a missense mutation in the Jag1 gene and displays missing posterior and sometimes anterior ampullae, structures that house the sensory cristae. Htu/+ mutants also demonstrate a significant reduction in the numbers of outer hair cells in the organ of Corti. Because lateral inhibition mediated by Notch predicts that disruptions in this pathway would lead to an increase in hair cells, we believe these data indicate an earlier role for Notch within the inner ear.

摘要

在哺乳动物内耳中,有六个独立的感觉区域,它们分别负责听觉和平衡功能,尽管这些感觉区域是如何被特化的仍不清楚。每个感觉区域都由两种细胞类型组成,即机械感觉毛细胞和支持细胞,它们以镶嵌的方式排列,每个毛细胞都被支持细胞包围。提出的形成感觉镶嵌的机制是由Notch信号通路介导的侧向抑制。然而,Notch配体之一锯齿状蛋白1(Jagged1,Jag1)的表达模式并不完全符合其在侧向抑制中的作用,因为它在感觉斑发育的早期就标记了它们——大概是在细胞做出最终命运决定之前很久。有人提出Jag1在确定耳内感觉上皮与非感觉上皮方面发挥作用[亚当,J.,米亚,A.,鲁克斯,I. L.,埃迪森,M.,恩里克,D.,伊什-霍罗维茨,D. & 刘易斯,J.(1998年)《发育》(英国剑桥)125卷,4645 - 4654页]。在这里,我们提供了实验证据,表明Notch信号可能参与确定感觉区域,因为我们发现一个显性小鼠突变体“转头者”(Htu)的Jag1基因存在错义突变,并且表现出后半规管壶腹缺失,有时前半规管壶腹也缺失,这些结构中容纳着感觉嵴。Htu/+突变体在柯蒂氏器中的外毛细胞数量也显著减少。由于由Notch介导的侧向抑制预测该信号通路的破坏会导致毛细胞数量增加,我们认为这些数据表明Notch在内耳中发挥了更早的作用。

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Proc Natl Acad Sci U S A. 2001 Mar 27;98(7):3873-8. doi: 10.1073/pnas.071496998. Epub 2001 Mar 20.

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