首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Functional Assessment Of Allelic Variants In The Slc26a4 Gene Involved In Pendred Syndrome And Nonsyndromic Eva
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Functional Assessment Of Allelic Variants In The Slc26a4 Gene Involved In Pendred Syndrome And Nonsyndromic Eva

机译:Slc26a4基因等位基因变体参与假性综合征和非综合征性EVA的功能评估

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摘要

Pendred syndrome is an autosomal recessive disorder characterized by sensorineural hearing loss, with malformations of the inner ear, ranging from enlarged vestibular aqueduct (EVA) to Mondini malformation, and deficient iodide organification in the thyroid gland. Nonsyndromic EVA (ns-EVA) is a separate type of sensorineural hearing loss showing normal thyroid function. Both Pendred syndrome and ns-EVA seem to be linked to the malfunction of pendrin (SLC26A4), a membrane transporter able to exchange anions between the cytosol and extracellular fluid. In the past, the pathogenicity of SLC26A4 missense mutations were assumed if the mutations fulfilled two criteria: low incidence of the mutation in the control population and substitution of evolutionary conserved amino acids. Here we show that these criteria are insufficient to make meaningful predictions about the effect of these SLC26A4 variants on the pendrin-induced ion transport. Furthermore, we functionally characterized 10 missense mutations within the SLC26A4 ORF, and consistently found that on the protein level, an addition or omission of a proline or a charged amino acid in the SLC26A4 sequence is detrimental to its function. These types of changes may be adequate for predicting SLC26A4 functionality in the absence of direct functional tests.
机译:Pendred综合征是一种常染色体隐性遗传疾病,其特征是感觉神经性听力丧失,内耳畸形,范围从前庭导水管(EVA)扩大到Mondini畸形,以及甲状腺中碘化物的组织不足。非综合征性EVA(ns-EVA)是感觉神经性听力损失的另一种类型,显示甲状腺功能正常。 Pendred综合征和ns-EVA似乎都与pendrin(SLC26A4)的功能障碍有关,后者是一种能够在细胞质和细胞外液之间交换阴离子的膜转运蛋白。过去,如果突变满足两个标准,则假定SLC26A4错义突变的致病性:对照人群中突变的发生率低以及进化保守氨基酸的替代。在这里,我们表明这些标准不足以对这些SLC26A4变体对Pendrin诱导的离子迁移的影响做出有意义的预测。此外,我们在功能上对SLC26A4 ORF中的10个错义突变进行了表征,并一致地发现,在蛋白质水平上,SLC26A4序列中脯氨酸或带电荷氨基酸的添加或缺失对其功能有害。在没有直接功能测试的情况下,这些类型的更改可能足以预测SLC26A4的功能。

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