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Jag1b通过调节前侧形态发生组织分离和防止后侧细胞死亡,对内耳感觉嵴的模式形成至关重要。

Jag1b is essential for patterning inner ear sensory cristae by regulating anterior morphogenetic tissue separation and preventing posterior cell death.

作者信息

Ma Wei-Rui, Zhang Jian

机构信息

State Key Laboratory of Molecular Developmental Biology, Institute of Genetics and Developmental Biology, Chinese Academy of Sciences, Beijing 100101, China University of Chinese Academy of Sciences, Beijing 100049, China.

State Key Laboratory of Molecular Developmental Biology, Institute of Genetics and Developmental Biology, Chinese Academy of Sciences, Beijing 100101, China

出版信息

Development. 2015 Feb 15;142(4):763-73. doi: 10.1242/dev.113662. Epub 2015 Jan 23.

DOI:10.1242/dev.113662
PMID:25617438
Abstract

The sensory patches of the vertebrate inner ear, which contain hair cells and supporting cells, are essential for hearing and balance functions. How the stereotypically organized sensory patches are formed remains to be determined. In this study, we isolated a zebrafish mutant in which the jag1b gene is disrupted by an EGFP insertion. Loss of Jag1b causes cell death in the developing posterior crista and results in downregulation of fgf10a in the posterior prosensory cells. Inhibition of FGFR activity in wild-type embryos also causes loss of the posterior crista, suggesting that Fgf10a mediates Jag1b activity. By contrast, in the anterior prosensory domain, Jag1b regulates separation of a single morphogenetic field into anterior and lateral cristae by flattening cells destined to form a nonsensory epithelium between the two cristae. MAPK activation in the nonsensory epithelium precursors is required for the separation. In the jag1b mutant, MAPK activation and cell flattening are extended to anterior crista primordia, causing loss of anterior crista. More importantly, inhibition of MAPK activity, which blocks the differentiation of nonsensory epithelial cells, generated a fused large crista and extra hair cells. Thus, Jag1b uses two distinct mechanisms to form three sensory cristae in zebrafish.

摘要

脊椎动物内耳的感觉斑包含毛细胞和支持细胞,对听觉和平衡功能至关重要。这些刻板组织的感觉斑是如何形成的仍有待确定。在本研究中,我们分离出一种斑马鱼突变体,其中jag1b基因被EGFP插入破坏。Jag1b的缺失导致发育中的后半规管细胞死亡,并导致前感觉细胞中fgf10a的下调。在野生型胚胎中抑制FGFR活性也会导致后半规管缺失,表明Fgf10a介导Jag1b的活性。相比之下,在前感觉区域,Jag1b通过使注定要在两个嵴之间形成非感觉上皮的细胞变平,调节单个形态发生场分离为前嵴和外侧嵴。非感觉上皮前体中的MAPK激活是分离所必需的。在jag1b突变体中,MAPK激活和细胞变平扩展到前嵴原基,导致前嵴缺失。更重要的是,抑制MAPK活性(这会阻止非感觉上皮细胞的分化)会产生融合的大嵴和额外的毛细胞。因此,Jag1b利用两种不同的机制在斑马鱼中形成三个感觉嵴。

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