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talpid3 鸡突变体的颅面发育

Craniofacial development in the talpid3 chicken mutant.

作者信息

Buxton Paul, Davey Megan G, Paton I Robert, Morrice David R, Francis-West Philippa H, Burt David W, Tickle Cheryll

机构信息

Department of Craniofacial Development, GKT Dental Institute, Floor 27 Guy's Tower, Guy's Hospital, London SE1 9RT, UK.

出版信息

Differentiation. 2004 Sep;72(7):348-62. doi: 10.1111/j.1432-0436.2004.07207006.x.

Abstract

The talpid(3) chicken mutant has a pleiotropic phenotype including polydactyly and craniofacial abnormalities. Limb polydactyly in talpid(3) suggests a gain of Hedgehog (Hh) signaling, whereas, paradoxically, absence of midline facial structures suggests a loss of Hh function. Here we analyze the status of Shh signaling in the talpid(3) mutant head. We show that Shh expression domains are lost from the talpid(3) head--in hindbrain, midbrain, zona limitans intrathalamica, and stomodeal ectoderm--and that direct targets of Hedgehog signaling, Ptc1, Ptc2, and Gli1, are also absent even in areas associated with primary Shh expression. These data suggest that the talpid(3) mutation leads to defective activation of the Shh pathway and, furthermore, that tissue-to-tissue transduction of Shh expression in the developing head depends on Hh pathway activation. Failure to activate the Shh pathway can also explain absence of floor plate and Hnf-3beta and Netrin-1 expression in midbrain and hindbrain and absence of Fgf-8 expression in commissural plate. Other aspects of gene expression in the talpid(3) head, however, suggest misspecification, such as maintenance of floor plate-like gene expression in telencephalon. In branchial arches and lower jaw, where Shh is expressed, changes in expression of genes involved in patterning and mesodermal specification suggest both gain and loss of Hedgehog function. Thus, analysis of gene expression in talpid(3) head shows that, as in talpid(3) limb, expression of some genes is lost, while others are ectopically expressed. Unlike the limb, many head regions depend on Hh induction of a secondary domain of Shh expression, and failure of this induction in talpid(3), together with the inability to activate the Shh pathway, explain the loss-of-function head phenotype. This gene expression analysis in the talpid(3) head also confirms and extends knowledge of the importance of Shh signaling and the balance between activation and repression of Shh targets in many aspects of craniofacial morphogenesis.

摘要

talpid(3)鸡突变体具有多效性表型,包括多指(趾)畸形和颅面异常。talpid(3)中的肢体多指(趾)畸形提示刺猬信号通路(Hh)活性增强,而矛盾的是,中线面部结构缺失提示Hh功能丧失。在此,我们分析了talpid(3)突变体头部中Shh信号通路的状态。我们发现,Shh表达结构域在talpid(3)头部中缺失,包括后脑、中脑、丘脑间界限带和口凹外胚层,并且即使在与初级Shh表达相关的区域,刺猬信号通路的直接靶标Ptc1、Ptc2和Gli1也不存在。这些数据表明,talpid(3)突变导致Shh信号通路的激活缺陷,此外,发育中头部Shh表达在组织间的转导依赖于Hh信号通路的激活。无法激活Shh信号通路也可以解释中脑和后脑底板、Hnf-3β和Netrin-1表达的缺失以及连合板中Fgf-8表达的缺失。然而,talpid(3)头部基因表达的其他方面提示了错误指定,例如端脑中底板样基因表达的维持。在表达Shh的鳃弓和下颌中,参与模式形成和中胚层指定的基因表达变化提示刺猬功能既有增强也有丧失。因此,对talpid(3)头部基因表达的分析表明,与talpid(3)肢体一样,一些基因的表达缺失,而其他基因则异位表达。与肢体不同,许多头部区域依赖于Hh诱导的Shh表达的次级结构域,而talpid(3)中这种诱导的失败,以及无法激活Shh信号通路,解释了功能丧失的头部表型。对talpid(3)头部的这种基因表达分析也证实并扩展了关于Shh信号通路的重要性以及在颅面形态发生的许多方面Shh靶标激活与抑制之间平衡的认识。

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