Tassano Elisa, Jagannathan Vidhya, Drögemüller Cord, Leoni Massimiliano, Hytönen Marjo K, Severino Mariasavina, Gimelli Stefania, Cuoco Cristina, Di Rocco Maja, Sanio Kirsi, Groves Andrew K, Leeb Tosso, Gimelli Giorgio
Istituto Giannina Gaslini, Genova, Italy.
Am J Med Genet A. 2015 Mar;167A(3):537-44. doi: 10.1002/ajmg.a.36895. Epub 2015 Feb 5.
We report on the molecular characterization of a microdeletion of approximately 2.5 Mb at 2p11.2 in a female baby with left congenital aural atresia, microtia, and ipsilateral internal carotid artery agenesis. The deletion was characterized by fluorescence in situ hybridization, array comparative genomic hybridization, and whole genome re-sequencing. Among the genes present in the deleted region, we focused our attention on the FOXI3 gene. Foxi3 is a member of the Foxi class of Forkhead transcription factors. In mouse, chicken and zebrafish Foxi3 homologues are expressed in the ectoderm and endoderm giving rise to elements of the jaw as well as external, middle and inner ear. Homozygous Foxi3-/- mice have recently been generated and show a complete absence of the inner, middle, and external ears as well as severe defects in the jaw and palate. Recently, a 7-bp duplication within exon 1 of FOXI3 that produces a frameshift and a premature stop codon was found in hairless dogs. Mild malformations of the outer auditory canal (closed ear canal) and ear lobe have also been noted in a fraction of FOXI3 heterozygote Peruvian hairless dogs. Based on the phenotypes of Foxi3 mutant animals, we propose that FOXI3 may be responsible for the phenotypic features of our patient. Further characterization of the genomic region and the analysis of similar patients may help to demonstrate this point.
我们报告了一名患有左侧先天性耳道闭锁、小耳畸形和同侧颈内动脉发育不全的女婴,其2p11.2处存在约2.5 Mb的微缺失的分子特征。通过荧光原位杂交、阵列比较基因组杂交和全基因组重测序对该缺失进行了特征分析。在缺失区域存在的基因中,我们将注意力集中在FOXI3基因上。Foxi3是叉头转录因子Foxi家族的成员。在小鼠、鸡和斑马鱼中,Foxi3同源物在外胚层和内胚层中表达,这些胚层会发育形成颌骨以及外耳、中耳和内耳的结构。最近已培育出纯合Foxi3-/-小鼠,这些小鼠表现出完全没有内耳、中耳和外耳,以及颌骨和腭部的严重缺陷。最近,在无毛犬中发现了FOXI3外显子1内的一个7碱基对重复,该重复导致了移码和提前终止密码子。在一部分FOXI3杂合的秘鲁无毛犬中也观察到了外耳道轻度畸形(耳道闭锁)和耳垂畸形。基于Foxi3突变动物的表型,我们推测FOXI3可能是导致我们这名患者表型特征的原因。对该基因组区域的进一步特征分析以及对类似患者的分析可能有助于证实这一点。