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致病性TMPRSS3变体的结构分析及其感音神经性听力损失的人工耳蜗植入结果

Structural analysis of pathogenic TMPRSS3 variants and their cochlear implantation outcomes of sensorineural hearing loss.

作者信息

Lee Seung Jae, Lee Somin, Han Jin Hee, Choi Byung Yoon, Lee Jun Ho, Lee Dae Hee, Lee Sang-Yeon, Oh Seung-Ha

机构信息

Department of Otorhinolaryngology-Head and Neck Surgery, Seoul National University Bundang Hospital, Seongnam, Republic of Korea.

Department of Otorhinolaryngology-Head and Neck Surgery, Seoul National University Hospital, Seoul, Republic of Korea.

出版信息

Gene. 2023 May 20;865:147335. doi: 10.1016/j.gene.2023.147335. Epub 2023 Mar 4.

Abstract

TMPRSS3, a type II transmembrane serine protease, is involved in various biological processes including the development and maintenance of the inner ear. Biallelic variants in TMPRSS3 typically result in altered protease activity, causing autosomal recessive non-syndromic hearing loss (ARNSHL). Structural modeling has been conducted to predict the pathogenicity of TMPRSS3 variants and to gain a better understanding of their prognostic correlation. The mutant-driven changes in TMPRSS3 had substantial impacts on neighboring residues, and the pathogenicity of variants was predicted based on their distance from the active site. However, a more in-depth analysis of other factors, such as intramolecular interactions and protein stability, which affect proteolytic activities is yet to be conducted for TMPRSS3 variants. Among 620 probands who provided genomic DNA for molecular genetic testing, eight families with biallelic TMPRSS3 variants that were segregated in a trans configuration were included. Seven different mutant alleles, either homozygous or compound heterozygous, contributed to TMPRSS3-associated ARNSHL, expanding the genotypic spectrum of disease-causing TMPRSS3 variants. Through three-dimensional modeling and structural analysis, TMPRSS3 variants compromise protein stability by altering intramolecular interactions, and each mutant differently interacts with the serine protease active site. Furthermore, the changes in intramolecular interactions leading to regional instability correlate with the results of functional assay and residual hearing function, but overall stability predictions do not. Our findings also build on previous evidence indicating that most recipients with TMPRSS3 variants have favorable cochlear implantation (CI) outcomes. We found that age at CI was significantly correlated with speech performance outcomes; genotype was not correlated with these outcomes. Collectively, the results of this study contribute to a more structural understanding of the underlying mechanisms of ARNSHL caused by TMPRSS3 variants.

摘要

跨膜丝氨酸蛋白酶3(TMPRSS3)是一种II型跨膜丝氨酸蛋白酶,参与包括内耳发育和维持在内的多种生物学过程。TMPRSS3的双等位基因变异通常会导致蛋白酶活性改变,引起常染色体隐性非综合征性听力损失(ARNSHL)。已经进行了结构建模以预测TMPRSS3变异的致病性,并更好地理解它们的预后相关性。TMPRSS3中由突变驱动的变化对邻近残基有重大影响,并且根据变异与活性位点的距离预测其致病性。然而,对于影响蛋白水解活性的其他因素,如分子内相互作用和蛋白质稳定性,尚未对TMPRSS3变异进行更深入的分析。在为分子遗传学检测提供基因组DNA的620名先证者中,纳入了8个双等位基因TMPRSS3变异以反式构型分离的家系。7种不同的突变等位基因,无论是纯合子还是复合杂合子,都导致了与TMPRSS3相关的ARNSHL,扩大了致病TMPRSS3变异的基因型谱。通过三维建模和结构分析,TMPRSS3变异通过改变分子内相互作用损害蛋白质稳定性,并且每个突变体与丝氨酸蛋白酶活性位点的相互作用不同。此外,导致区域不稳定的分子内相互作用变化与功能测定结果和残余听力功能相关,但总体稳定性预测不相关。我们的研究结果还基于先前的证据,表明大多数携带TMPRSS3变异的受者有良好的人工耳蜗植入(CI)结果。我们发现CI时的年龄与言语表现结果显著相关;基因型与这些结果无关。总体而言,本研究结果有助于更深入地了解由TMPRSS3变异引起的ARNSHL的潜在机制。

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