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TMC1 同义替换的重新分类为一种变体,破坏与隐性听力损失相关的剪接调控元件。

Reclassification of a TMC1 synonymous substitution as a variant disrupting splicing regulatory elements associated with recessive hearing loss.

机构信息

Molecular Genetics Laboratory, Univ Montpellier, CHU Montpellier, Montpellier, France.

Institute for Neurosciences of Montpellier, Univ Montpellier, Inserm, Montpellier, France.

出版信息

Eur J Hum Genet. 2022 Jan;30(1):34-41. doi: 10.1038/s41431-021-01010-9. Epub 2021 Dec 3.

Abstract

Alterations of the transmembrane channel-like 1 gene (TMC1) are involved in autosomal recessive and dominant nonsyndromic hearing loss (NSHL). To date, up to 117 causal variants including substitutions, insertions and splice variants have been reported in families from different populations. In a patient suffering from severe prelingual NSHL, we identified, in the homozygous state, the previously considered likely benign synonymous c.627C>T; p.(Leu209=) substitution. We used in silico tools predicting variant-induced alterations of splicing regulatory elements (SREs) and pinpointed this transition as a candidate splice-altering variation. Functional splicing analysis, using a minigene assay, confirmed that the variant altered a critical regulatory sequence which is essential for the exon 11 inclusion in the TMC1 transcripts. This result was reinforced by the analysis of orthologous TMC1 mammalian sequences for which the deleterious effect on the mRNA processing of a native thymidine was always counteracted by the presence of a stronger donor splice site or additional enhancer motifs. This study demonstrates, for the first time, the pathogenicity of the c.627C>T alteration leading to its reclassification as a causal variant impacting SREs and highlights the major importance of exhaustive studies to accurately evaluate the pathogenicity of a variant, regardless of the variation type.

摘要

跨膜通道样 1 基因 (TMC1) 的改变与常染色体隐性和显性非综合征性听力损失 (NSHL) 有关。迄今为止,在来自不同人群的家族中已经报道了多达 117 种致病变异,包括取代、插入和剪接变异。在一名患有严重语前 NSHL 的患者中,我们在纯合状态下发现了先前被认为可能是良性同义 c.627C>T;p.(Leu209=)取代。我们使用了预测剪接调节元件 (SRE) 中变异诱导改变的计算机工具,并将该转换鉴定为候选剪接改变变异。使用小基因测定法进行的功能剪接分析证实,该变异改变了一个关键的调节序列,对于 TMC1 转录物中第 11 外显子的包含是必需的。这一结果得到了同源 TMC1 哺乳动物序列分析的支持,对于该序列,一个天然胸苷的 mRNA 加工的有害影响总是被更强的供体位点或额外的增强子模体所抵消。这项研究首次证明了 c.627C>T 变异的致病性,导致其重新分类为影响 SRE 的致病变异,并强调了进行详尽研究以准确评估变异的致病性的重要性,而不论变异类型如何。

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