首页> 外文期刊>Disease models & mechanisms: DMM >Deletion of a conserved regulatory element required for Hmx1 expression in craniofacial mesenchyme in the dumbo rat: a newly identified cause of congenital ear malformation
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Deletion of a conserved regulatory element required for Hmx1 expression in craniofacial mesenchyme in the dumbo rat: a newly identified cause of congenital ear malformation

机译:删除小飞象大鼠颅面间质中Hmx1表达所需的保守调节元件:新发现的先天性耳畸形原因

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Hmx1 is a homeodomain transcription factor expressed in the developing eye, peripheral ganglia, and branchial arches of avian and mammalian embryos. Recent studies have identified a loss-of-function allele at the HMX1 locus as the causative mutation in the oculo-auricular syndrome (OAS) in humans, characterized by ear and eye malformations. The mouse dumbo ( dmbo ) mutation, with similar effects on ear and eye development, also results from a loss-of-function mutation in the Hmx1 gene. A recessive dmbo mutation causing ear malformation in rats has been mapped to the chromosomal region containing the Hmx1 gene, but the nature of the causative allele is unknown. Here we show that dumbo rats and mice exhibit similar neonatal ear and eye phenotypes. In midgestation embryos, dumbo rats show a specific loss of Hmx1 expression in neural-crest-derived craniofacial mesenchyme (CM), whereas Hmx1 is expressed normally in retinal progenitors, sensory ganglia and in CM, which is derived from mesoderm. High-throughput resequencing of 1 Mb of rat chromosome 14 from dmbo/dmbo rats, encompassing the Hmx1 locus, reveals numerous divergences from the rat genomic reference sequence, but no coding changes in Hmx1 . Fine genetic mapping narrows the dmbo critical region to an interval of ~410 kb immediately downstream of the Hmx1 transcription unit. Further sequence analysis of this region reveals a 5777-bp deletion located ~80 kb downstream in dmbo/dmbo rats that is not apparent in 137 other rat strains. The dmbo deletion region contains a highly conserved domain of ~500 bp, which is a candidate distal enhancer and which exhibits a similar relationship to Hmx genes in all vertebrate species for which data are available. We conclude that the rat dumbo phenotype is likely to result from loss of function of an ultraconserved enhancer specifically regulating Hmx1 expression in neural-crest-derived CM. Dysregulation of Hmx1 expression is thus a candidate mechanism for congenital ear malformation, most cases of which remain unexplained.
机译:Hmx1是一种同源结构域转录因子,在禽类和哺乳动物胚胎的发育中眼,外周神经节和分支弓中表达。最近的研究已将HMX1基因座的功能缺失等位基因鉴定为人眼耳综合征(OAS)的致病突变,其特征是耳和眼畸形。小鼠dumbo(dmbo)突变对耳朵和眼睛的发育具有相似的影响,也来自Hmx1基因的功能丧失突变。导致大鼠耳畸形的隐性dmbo突变已定位到含有Hmx1基因的染色体区域,但致病等位基因的性质尚不清楚。在这里,我们显示小飞象大鼠和小鼠表现出相似的新生儿耳和眼表型。在妊娠胚胎中,小飞鼠在神经c衍生的颅面间充质(CM)中显示Hmx1表达的特定损失,而Hmx1在视网膜祖细胞,感觉神经节和中胚层中正常表达。来自dmbo / dmbo大鼠的1 Mb大鼠染色体14的高通量重测序,包括Hmx1基因座,揭示了与大鼠基因组参考序列的众多差异,但Hmx1中没有编码变化。精细的遗传作图将dmbo关键区域缩小到Hmx1转录单位下游紧邻的〜410 kb的间隔。对该区域的进一步序列分析表明,在dmbo / dmbo大鼠下游〜80 kb处有一个5777 bp的缺失,在其他137个大鼠品系中不明显。 dmbo缺失区含有一个〜500 bp的高度保守的结构域,该结构域是候选的远端增强子,并且在所有有数据的脊椎动物中与Hmx基因表现出相似的关系。我们得出结论,大鼠小飞象表型可能是由于特异调节神经neural衍生的CM中Hmx1表达的超保守增强子功能丧失所致。因此,Hmx1表达的失调是先天性耳畸形的候选机制,大多数情况尚无法解释。

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