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斑马鱼eda和edar突变体揭示了外胚层发育不良信号在脊椎动物中的保守和原始作用。

Zebrafish eda and edar mutants reveal conserved and ancestral roles of ectodysplasin signaling in vertebrates.

作者信息

Harris Matthew P, Rohner Nicolas, Schwarz Heinz, Perathoner Simon, Konstantinidis Peter, Nüsslein-Volhard Christiane

机构信息

Max Planck Institute for Developmental Biology, Tübingen, Germany.

出版信息

PLoS Genet. 2008 Oct 3;4(10):e1000206. doi: 10.1371/journal.pgen.1000206.

Abstract

The genetic basis of the development and variation of adult form of vertebrates is not well understood. To address this problem, we performed a mutant screen to identify genes essential for the formation of adult skeletal structures of the zebrafish. Here, we describe the phenotypic and molecular characterization of a set of mutants showing loss of adult structures of the dermal skeleton, such as the rays of the fins and the scales, as well as the pharyngeal teeth. The mutations represent adult-viable, loss of function alleles in the ectodysplasin (eda) and ectodysplasin receptor (edar) genes. These genes are frequently mutated in the human hereditary disease hypohidrotic ectodermal dysplasia (HED; OMIM 224900, 305100) that affects the development of integumentary appendages such as hair and teeth. We find mutations in zebrafish edar that affect similar residues as mutated in human cases of HED and show similar phenotypic consequences. eda and edar are not required for early zebrafish development, but are rather specific for the development of adult skeletal and dental structures. We find that the defects of the fins and scales are due to the role of Eda signaling in organizing epidermal cells into discrete signaling centers of the scale epidermal placode and fin fold. Our genetic analysis demonstrates dose-sensitive and organ-specific response to alteration in levels of Eda signaling. In addition, we show substantial buffering of the effect of loss of edar function in different genetic backgrounds, suggesting canalization of this developmental system. We uncover a previously unknown role of Eda signaling in teleosts and show conservation of the developmental mechanisms involved in the formation and variation of both integumentary appendages and limbs. Lastly, our findings point to the utility of adult genetic screens in the zebrafish in identifying essential developmental processes involved in human disease and in morphological evolution.

摘要

脊椎动物成体形态发育和变异的遗传基础尚未得到充分理解。为了解决这个问题,我们进行了一项突变体筛选,以鉴定斑马鱼成体骨骼结构形成所必需的基因。在这里,我们描述了一组突变体的表型和分子特征,这些突变体表现出真皮骨骼的成体结构缺失,如鳍条、鳞片以及咽齿。这些突变代表外胚层发育不良蛋白(eda)和外胚层发育不良蛋白受体(edar)基因中的成体存活、功能丧失等位基因。这些基因在人类遗传性疾病少汗性外胚层发育不良(HED;OMIM 224900, 305100)中经常发生突变,该疾病会影响毛发和牙齿等皮肤附属器的发育。我们在斑马鱼edar中发现的突变影响了与人类HED病例中突变相似的残基,并表现出相似的表型后果。eda和edar在斑马鱼早期发育中并非必需,而是对成体骨骼和牙齿结构的发育具有特异性。我们发现鳍和鳞片的缺陷是由于Eda信号在将表皮细胞组织成鳞片表皮基板和鳍褶的离散信号中心中所起的作用。我们的遗传分析表明,对Eda信号水平变化存在剂量敏感和器官特异性反应。此外,我们发现在不同遗传背景下edar功能丧失的影响存在显著缓冲,这表明该发育系统具有稳健性。我们揭示了Eda信号在硬骨鱼中以前未知的作用,并表明在皮肤附属器和肢体的形成及变异中所涉及的发育机制具有保守性。最后,我们的研究结果表明,斑马鱼成体遗传筛选在识别与人类疾病和形态进化相关的基本发育过程中具有实用性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9ab0/2542418/28faf905280f/pgen.1000206.g004.jpg

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