首页> 外文期刊>Biochemical and Biophysical Research Communications >The digenic hypothesis unraveled: the GJB6 del(GJB6-D13S1830) mutation causes allele-specific loss of GJB2 expression in cis.
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The digenic hypothesis unraveled: the GJB6 del(GJB6-D13S1830) mutation causes allele-specific loss of GJB2 expression in cis.

机译:揭开双基因假说:GJB6 del(GJB6-D13S1830)突变导致顺式中GJB2表达的等位基因特异性丢失。

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摘要

Connexin 26 and connexin 30 are the major connexins expressed in the cochlea, where they are co-localized and form heteromeric gap junctions. Mutations in the GJB2 gene, which encodes connexin 26, are the most common cause of prelingual non-syndromic sensorineural hearing loss. The large del(GJB6-D13S1830) mutation which involves GJB6 (connexin 30), causes hearing loss in homozygous individuals, or when compound heterozygous with a GJB2 mutation. Until now, it remained unresolved whether this phenomenon results from digenic inheritance or because of lack of GJB2 mRNA expression. After RNA extraction from buccal epithelium, a tissue known to express connexin 26 as well as connexin 30, allele-specific expression of GJB2 was investigated by reverse-transcriptase PCR and restriction digestions in three unrelated individuals compound heterozygous for a GJB2 mutation and del(GJB6-D13S1830). Each proband carried a different sequence change in GJB2. The mutated GJB2 allele in trans with del(GJB6-D13S1830) was expressed in all three individuals whereas the GJB2 allele located in cis with the deletion was not expressed at all. Thus, mutations in these two genes do not cause hearing loss through a digenic mechanism of inheritance alone, as was postulated previously, but instead GJB2 expression is abolished through an effect in cis with the deletion. Our study provides unequivocal support for the hypothesis that del(GJB6-D13S1830) eliminates a putative cis-regulatory element located within the deleted region.
机译:连接蛋白26和连接蛋白30是在耳蜗中表达的主要连接蛋白,它们在该处共定位并形成异聚间隙连接。编码连接蛋白26的GJB2基因突变是舌前非综合征性感音神经性听力丧失的最常见原因。涉及GJB6(连接蛋白30)的大del(GJB6-D13S1830)突变会导致纯合个体或具有GJB2突变的复合杂合个体的听力丧失。到目前为止,这种现象是双基因遗传还是由于缺乏GJB2 mRNA表达仍未得到解决。从颊粘膜上皮提取RNA后,该组织表达连接蛋白26和连接蛋白30,通过逆转录酶PCR和限制性消化在三个无关的个体中对GJB2突变和del(GJB6杂合)研究了GJB2的等位基因特异性表达。 -D13S1830)。每个先证者在GJB2中携带不同的序列变化。在所有三个个体中都表达了与del(GJB6-D13S1830)反式的突变GJB2等位基因,而根本没有表达与顺式缺失的GJB2等位基因。因此,这两个基因中的突变不会像前面所假定的那样,仅通过双基因遗传机制而导致听力下降,而是通过删除的顺式作用消除了GJB2的表达。我们的研究为del(GJB6-D13S1830)消除了位于缺失区域内的假定的顺式调控元件这一假设提供了明确的支持。

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