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半规管形态发生在斑马鱼内耳需要 gpr126(lauscher)的功能,gpr126(lauscher)是一个黏附类 G 蛋白偶联受体基因。

Semicircular canal morphogenesis in the zebrafish inner ear requires the function of gpr126 (lauscher), an adhesion class G protein-coupled receptor gene.

机构信息

MRC Centre for Developmental and Biomedical Genetics and Department of Biomedical Science, University of Sheffield, Sheffield, S10 2TN, UK.

出版信息

Development. 2013 Nov;140(21):4362-74. doi: 10.1242/dev.098061. Epub 2013 Sep 25.

Abstract

Morphogenesis of the semicircular canal ducts in the vertebrate inner ear is a dramatic example of epithelial remodelling in the embryo, and failure of normal canal development results in vestibular dysfunction. In zebrafish and Xenopus, semicircular canal ducts develop when projections of epithelium, driven by extracellular matrix production, push into the otic vesicle and fuse to form pillars. We show that in the zebrafish, extracellular matrix gene expression is high during projection outgrowth and then rapidly downregulated after fusion. Enzymatic disruption of hyaluronan in the projections leads to their collapse and a failure to form pillars: as a result, the ears swell. We have cloned a zebrafish mutant, lauscher (lau), identified by its swollen ear phenotype. The primary defect in the ear is abnormal projection outgrowth and a failure of fusion to form the semicircular canal pillars. Otic expression of extracellular matrix components is highly disrupted: several genes fail to become downregulated and remain expressed at abnormally high levels into late larval stages. The lau mutations disrupt gpr126, an adhesion class G protein-coupled receptor gene. Expression of gpr126 is similar to that of sox10, an ear and neural crest marker, and is partially dependent on sox10 activity. Fusion of canal projections and downregulation of otic versican expression in a hypomorphic lau allele can be restored by cAMP agonists. We propose that Gpr126 acts through a cAMP-mediated pathway to control the outgrowth and adhesion of canal projections in the zebrafish ear via the regulation of extracellular matrix gene expression.

摘要

脊椎动物内耳半规管的形态发生是胚胎上皮重塑的一个显著例子,正常的管腔发育失败会导致前庭功能障碍。在斑马鱼和非洲爪蟾中,当由细胞外基质产生驱动的上皮突起推入耳泡并融合形成柱时,半规管管腔就会发育。我们发现,在斑马鱼中,细胞外基质基因的表达在突起生长过程中很高,然后在融合后迅速下调。在突起中破坏透明质酸的酶会导致它们崩溃,无法形成柱:结果,耳朵肿胀。我们已经克隆了一种斑马鱼突变体,lauscher(lau),它的肿胀耳朵表型被识别出来。耳朵的主要缺陷是异常的突起生长和融合形成半规管柱的失败。耳表达的细胞外基质成分高度紊乱:几个基因不能下调,并且在晚期幼虫阶段仍然以异常高的水平表达。lau 突变破坏了 gpr126,一种粘附类 G 蛋白偶联受体基因。gpr126 的表达与 sox10 相似,sox10 是耳和神经嵴的标志物,并且部分依赖于 sox10 活性。在一个低功能的 lau 等位基因中,管腔突起的融合和耳 versican 表达的下调可以通过 cAMP 激动剂来恢复。我们提出 Gpr126 通过 cAMP 介导的途径作用,通过调节细胞外基质基因的表达来控制斑马鱼耳朵中管腔突起的生长和粘附。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2c06/4007713/90c6e849113c/DEV098061F1.jpg

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