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首页> 外文期刊>G3: Genes, Genomes, Genetics >A Splice Defect in the EDA Gene in Dogs with an X-Linked Hypohidrotic Ectodermal Dysplasia (XLHED) Phenotype
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A Splice Defect in the EDA Gene in Dogs with an X-Linked Hypohidrotic Ectodermal Dysplasia (XLHED) Phenotype

机译:X连锁的多汗性表皮异型增生(XLHED)表型的狗的EDA基因剪接缺陷。

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摘要

X-linked hypohidrotic ectodermal dysplasia (XLHED) caused by variants in the EDA gene represents the most common ectodermal dysplasia in humans. We investigated three male mixed-breed dogs with an ectodermal dysplasia phenotype characterized by marked hypotrichosis and multifocal complete alopecia, almost complete absence of sweat and sebaceous glands, and altered dentition with missing and abnormally shaped teeth. Analysis of SNP chip genotypes and whole genome sequence data from the three affected dogs revealed that the affected dogs shared the same haplotype on a large segment of the X-chromosome, including the EDA gene. Unexpectedly, the whole genome sequence data did not reveal any nonsynonymous EDA variant in the affected dogs. We therefore performed an RNA-seq experiment on skin biopsies to search for changes in the transcriptome. This analysis revealed that the EDA transcript in the affected dogs lacked 103 nucleotides encoded by exon?2. We speculate that this exon skipping is caused by a genetic variant located in one of the large introns flanking this exon, which was missed by whole genome sequencing with the illumina short read technology. The altered EDA transcript splicing most likely causes the observed ectodermal dysplasia in the affected dogs. These dogs thus offer an excellent opportunity to gain insights into the complex splicing processes required for expression of the EDA gene, and other genes with large introns.
机译:由EDA基因变异引起的X连锁性多汗外胚层发育不良(XLHED)代表了人类中最常见的外胚层发育不良。我们调查了三只具有外胚层发育异常表型的雄性混种狗,其特征是明显的毛发不全和多灶性完全脱发,几乎完全没有汗水和皮脂腺,并且牙列缺失和畸形。对三只患病犬的SNP芯片基因型和全基因组序列数据的分析显示,患犬在X染色体的很大一部分(包括EDA基因)上具有相同的单倍型。出乎意料的是,整个基因组序列数据并未在受影响的狗中揭示出任何非同义的EDA变体。因此,我们对皮肤活检进行了RNA序列实验,以寻找转录组的变化。该分析表明,患病犬的EDA转录本缺少外显子β2编码的103个核苷酸。我们推测此外显子跳过是由位于该外显子侧翼的一个大内含子中的一个遗传变异引起的,而使用照明短读技术进行的全基因组测序却错过了这一变异。改变的EDA转录剪接很可能导致在患狗中观察到外胚层发育异常。因此,这些狗为了解EDA基因和其他具有大内含子的基因表达所需的复杂剪接过程提供了绝佳的机会。

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