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刺猬信号通路对于斑马鱼耳囊的前后模式形成是必需的。

Hedgehog signalling is required for correct anteroposterior patterning of the zebrafish otic vesicle.

作者信息

Hammond Katherine L, Loynes Helen E, Folarin Amos A, Smith Joanne, Whitfield Tanya T

机构信息

Centre for Developmental Genetics, University of Sheffield School of Medicine and Biomedical Science, Western Bank, Sheffield S10 2TN, UK.

出版信息

Development. 2003 Apr;130(7):1403-17. doi: 10.1242/dev.00360.

Abstract

Currently, few factors have been identified that provide the inductive signals necessary to transform the simple otic placode into the complex asymmetric structure of the adult vertebrate inner ear. We provide evidence that Hedgehog signalling from ventral midline structures acts directly on the zebrafish otic vesicle to induce posterior otic identity. We demonstrate that two strong Hedgehog pathway mutants, chameleon (con(tf18b)) and slow muscle omitted (smu(b641)) exhibit a striking partial mirror image duplication of anterior otic structures, concomitant with a loss of posterior otic domains. These effects can be phenocopied by overexpression of patched1 mRNA to reduce Hedgehog signalling. Ectopic activation of the Hedgehog pathway, by injection of sonic hedgehog or dominant-negative protein kinase A RNA, has the reverse effect: ears lose anterior otic structures and show a mirror image duplication of posterior regions. By using double mutants and antisense morpholino analysis, we also show that both Sonic hedgehog and Tiggy-winkle hedgehog are involved in anteroposterior patterning of the zebrafish otic vesicle.

摘要

目前,已确定的能够提供将简单耳基板转化为成年脊椎动物内耳复杂不对称结构所需诱导信号的因素很少。我们提供的证据表明,来自腹侧中线结构的刺猬信号通路直接作用于斑马鱼耳泡,以诱导耳泡后部特征的形成。我们证明,两个刺猬信号通路强突变体,变色龙(con(tf18b))和慢肌缺失(smu(b641)),表现出前耳结构明显的部分镜像重复,同时伴有后耳区域的缺失。通过过表达patched1 mRNA以减少刺猬信号通路,这些效应可以被模拟。通过注射音猬因子或显性负性蛋白激酶A RNA异位激活刺猬信号通路,会产生相反的效果:内耳失去前耳结构,并表现出后耳区域的镜像重复。通过使用双突变体和反义吗啉代分析,我们还表明音猬因子和细纹猬因子都参与了斑马鱼耳泡的前后模式形成。

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