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在一个大型听力受损人群中进行外显子变异优先级排序,表明 IKZF2 与非综合征性听力损失有关,并指导未解决病例的未来研究。

Exome variant prioritization in a large cohort of hearing-impaired individuals indicates IKZF2 to be associated with non-syndromic hearing loss and guides future research of unsolved cases.

机构信息

Department of Otorhinolaryngology, Radboudumc, Nijmegen, The Netherlands.

Donders Institute for Brain, Cognition and Behaviour, Radboudumc, Nijmegen, The Netherlands.

出版信息

Hum Genet. 2024 Nov;143(11):1379-1399. doi: 10.1007/s00439-024-02706-w. Epub 2024 Oct 16.

Abstract

Although more than 140 genes have been associated with non-syndromic hereditary hearing loss (HL), at least half of the cases remain unexplained in medical genetic testing. One reason is that pathogenic variants are located in 'novel' deafness genes. A variant prioritization approach was used to identify novel (candidate) genes for HL. Exome-wide sequencing data were assessed for subjects with presumed hereditary HL that remained unexplained in medical genetic testing by gene-panel analysis. Cases in group AD had presumed autosomal dominantly inherited HL (n = 124), and in group AR, presumed autosomal recessive HL (n = 337). Variants in known and candidate deafness genes were prioritized based on allele frequencies and predicted effects. Selected variants were tested for their co-segregation with HL. Two cases were solved by variants in recently identified deafness genes (ABHD12, TRRAP). Variant prioritization also revealed potentially causative variants in candidate genes associated with recessive and X-linked HL. Importantly, missense variants in IKZF2 were found to co-segregate with dominantly inherited non-syndromic HL in three families. These variants specifically affected Zn-coordinating cysteine or histidine residues of the zinc finger motifs 2 and 3 of the encoded protein Helios. This finding indicates a complex genotype-phenotype correlation for IKZF2 defects, as this gene was previously associated with non-syndromic dysfunction of the immune system and ICHAD syndrome, including HL. The designed strategy for variant prioritization revealed that IKZF2 variants can underlie non-syndromic HL. The large number of candidate genes for HL and variants therein stress the importance of inclusion of family members for variant prioritization.

摘要

虽然已有超过 140 个基因与非综合征遗传性听力损失(hearing loss,HL)相关,但至少有一半的病例在医学基因检测中仍无法解释。原因之一是致病变体位于“新”的耳聋基因中。使用变体优先级方法来确定 HL 的新(候选)基因。对通过基因panel 分析在医学遗传检测中仍未解释的假定遗传性 HL 受试者的外显子组测序数据进行评估。AD 组的病例具有假定的常染色体显性遗传性 HL(n=124),AR 组具有假定的常染色体隐性遗传性 HL(n=337)。根据等位基因频率和预测的影响,对已知和候选耳聋基因中的变体进行优先级排序。选择的变体用于测试其与 HL 的共分离。通过最近鉴定的耳聋基因(ABHD12、TRRAP)中的变体解决了两个病例。变体优先级排序还揭示了候选基因中与隐性和 X 连锁 HL 相关的潜在致病变体。重要的是,在三个家族中,IKZF2 的错义变体与显性遗传性非综合征性 HL 共分离。这些变体特异性地影响编码蛋白 Helios 的锌指结构域 2 和 3 中的 Zn 配位半胱氨酸或组氨酸残基。这一发现表明 IKZF2 缺陷的复杂基因型-表型相关性,因为该基因先前与非综合征性免疫系统功能障碍和 ICHAD 综合征相关,包括 HL。变体优先级排序的设计策略表明,IKZF2 变体可能是 HL 的基础。HL 的候选基因数量众多,其中的变体强调了纳入家庭成员进行变体优先级排序的重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ff6f/11522133/f3554c2ae5f0/439_2024_2706_Fig1_HTML.jpg

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