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Probing the Effect of Two Heterozygous Mutations in Codon 723 of SLC26A4 on Deafness Phenotype Based on Molecular Dynamics Simulations

机译:基于分子动力学模拟探讨SLC26A4密码子723的两个杂合突变对耳聋表型的影响

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摘要

A Chinese family was identified with clinical features of enlarged vestibular aqueduct syndrome (EVAS). The mutational analysis showed that the proband (III-2) had EVAS with bilateral sensorineural hearing loss and carried a rare compound heterozygous mutation of SLC26A4 (IVS7-2A>G, c.2167C>G), which was inherited from the same mutant alleles of IVS7-2A>G heterozygous father and c.2167C>G heterozygous mother. Compared with another confirmed pathogenic biallelic mutation in SLC26A4 (IVS7-2A>G, c.2168A>G), these two biallelic mutations shared one common mutant allele and the same codon of the other mutant allele, but led to different changes of amino acid (p.H723D, p.H723R) and both resulted in the deafness phenotype. Structure-modeling indicated that these two mutant alleles changed the shape of pendrin protein encoded by SLC26A4 with increasing randomness in conformation, and might impair pendrin’s ability as an anion transporter. The molecular dynamics simulations also revealed that the stability of mutant pendrins was reduced with increased flexibility of backbone atoms, which was consistent with the structure-modeling results. These evidences indicated that codon 723 was a hot-spot region in SLC26A4 with a significant impact on the structure and function of pendrin, and acted as one of the genetic factors responsible for the development of hearing loss.
机译:确定了一个中国家庭,其临床特征为前庭导水管综合症(EVAS)扩大。突变分析表明,先证者(III-2)具有双侧感觉神经性听力丧失的EVAS,并携带罕见的SLC26A4杂合突变(IVS7-2A> G,c.2167C> G),该突变源于相同的突变等位基因IVS7-2A> G杂合子父亲,c.2167C> G杂合子母亲。与SLC26A4中另一个已确认的致病性双等位基因突变(IVS7-2A> G,c.2168A> G)相比,这两个双等位基因突变共享一个共同的突变等位基因和另一个突变等位基因的相同密码子,但导致氨基酸的不同变化(p.H723D,p.H723R)都导致耳聋表型。结构模型表明,这两个突变等位基因改变了SLC26A4编码的pendrin蛋白的形状,其构象随机性增加,并可能削弱了pendrin作为阴离子转运蛋白的能力。分子动力学模拟还显示,随着主链原子柔性的增加,突变型Pendrins的稳定性降低,这与结构建模结果一致。这些证据表明,密码子723是SLC26A4的一个热点区域,对Pendrin的结构和功能有重大影响,并且是导致听力损失的遗传因素之一。

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