Functional characterisation of human recessive DIS3 variants in premature ovarian insufficiency.

IF 4.3 3区 材料科学 Q1 ENGINEERING, ELECTRICAL & ELECTRONIC ACS Applied Electronic Materials Pub Date : 2024-10-14 DOI:10.1093/biolre/ioae148
Brianna L Kline, Nicole A Siddall, Fernando Wijaya, Catherine J Stuart, Luisa Orlando, Shabnam Bakhshalizadeh, Fateme Afkhami, Katrina M Bell, Sylvie Jaillard, Gorjana Robevska, Jocelyn A Bergen, Shirin Shahbazi, Ambro Hoof, Katie L Ayers, Gary R Hime, Andrew H Sinclair, Elena J Tucker
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Abstract

Premature ovarian insufficiency (POI) is characterised by the loss or complete absence of ovarian activity in women under the age of 40. Clinical presentation of POI varies with phenotypic severity ranging from premature loss of menses to complete gonadal dysgenesis. POI is genetically heterogeneous with >100 causative gene variants identified thus far. The aetiology of POI varies from syndromic, idiopathic, monogenic to autoimmune causes the condition. Genetic diagnoses are beneficial to those impacted by POI as it allows for improved clinical management and fertility preservation. Identifying novel variants in candidate POI genes, however, is insufficient to make clinical diagnoses. The impact of missense variants can be predicted using bioinformatic algorithms but computational approaches have limitations and can generate false positive and false negative predictions. Functional characterisation of missense variants, is therefore imperative, particularly for genes lacking a well-established genotype:phenotype correlation. Here we used whole-exome sequencing (WES) to identify the first case of a homozygous missense variant in DIS3 (c.2320C > T; p.His774Tyr) a critical component of the RNA exosome in a POI patient. This adds to the previously described compound heterozygous patient. We perform the first functional characterisation of a human POI-associated DIS3 variant. A slight defect in mitotic growth was caused by the variant in a Saccharomyces cerevisiae model. Transgenic rescue of Dis3 knockdown in Drosophila melanogaster with human DIS3 carrying the patient variant led to aberrant ovarian development and egg chamber degeneration. This supports a potential deleterious impact of the human c.2320C > T; p.His774Tyr variant.

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人类隐性 DIS3 变体在卵巢早衰中的功能特征。
早发性卵巢功能不全(POI)的特征是 40 岁以下的女性丧失或完全没有卵巢活动。早发性卵巢功能不全的临床表现因表型的严重程度而异,从月经过早丧失到完全性腺发育不良不等。POI 具有遗传异质性,迄今已发现 100 多种致病基因变异。POI 的病因有综合征、特发性、单基因和自身免疫等。基因诊断对受 POI 影响的患者非常有益,因为它可以改善临床管理和生育能力的保存。然而,鉴定 POI 候选基因中的新型变异不足以做出临床诊断。利用生物信息学算法可以预测错义变异的影响,但计算方法有其局限性,可能会产生假阳性和假阴性预测。因此,错义变异的功能特征描述势在必行,尤其是对于缺乏完善的基因型与表型相关性的基因。在这里,我们利用全外显子组测序(WES)在一名 POI 患者中鉴定出了首个 DIS3(c.2320C > T; p.His774Tyr)同源错义变异病例,DIS3 是 RNA 外泌体的关键组成部分。这是对之前描述的复合杂合型患者的补充。我们首次对人类 POI 相关 DIS3 变体进行了功能鉴定。在酿酒酵母模型中,该变体导致了有丝分裂生长的轻微缺陷。用携带患者变体的人类 DIS3 转基因拯救黑腹果蝇中被敲除的 Dis3 会导致卵巢发育异常和卵室退化。这支持了人类 c.2320C > T; p.His774Tyr 变异的潜在有害影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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CiteScore
7.20
自引率
4.30%
发文量
567
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