在一个多代家族中,β -微管蛋白4B基因(TUBB4B)突变导致常染色体显性视网膜色素变性伴感音神经性听力损失。

IF 1.4 3区 医学 Q4 BIOCHEMISTRY & MOLECULAR BIOLOGY
Molecular Vision Pub Date : 2025-05-16 eCollection Date: 2025-01-01
Cheryl Y Gregory-Evans, Aaron W Joe, Kevin Gregory-Evans
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引用次数: 0

摘要

目的:一个多代加拿大家庭的成员向遗传性视网膜变性(IRD)诊所提出色素性视网膜炎(RP)和感音神经性听力损失,让人想起Usher综合征表型。已知Usher综合征基因的双等位致病变异未被发现。因此,我们在本研究中招募了更多的家庭成员,并检查其他IRD基因变异是否可以解释家庭中的表型。方法:对家庭成员进行全面的眼科检查,包括最佳矫正视力、直接和间接眼科检查、眼底摄影、视野测试、光谱域光学相干断层扫描、听力学检查和基因检测。一些患者也有自身荧光成像。在斑马鱼中,通过反义morpholino敲低tubb4b启动功能丧失测试。结果:患者的多模式临床测试显示,常染色体显性晚发性RP与进行性双侧感音神经性听力损失相关,发生在生命的第二到第三十年,没有前庭受累。基于小组的基因检测显示,β -微管蛋白4B基因(TUBB4B)的c.1168C b> T, p.Arg390Trp杂合变异仅在受影响的家庭成员中存在。基于计算机分析、家族分离分析和文献评价,该变异可能是常染色体显性遗传的致病变异。我们检索了当地约1000例IRD患者的数据库,未发现其他TUBB4B变体,证实这是一种罕见的疾病变体。在斑马鱼中敲低tubb4b基因会导致视网膜视锥细胞和视杆细胞的光感受器异常,以及发育中的大脑出现脑积水,从而导致早期幼虫死亡。结论:我们首次描述了一个TUBB4B基因变异p.(Arg390Trp)与聋盲分离的多代家族,建立了常染色体显性遗传。这进一步证实了Arg390密码子是一个突变热点。我们还扩大了p.(Arg390Trp) TUBB4B基因变异的表型范围,包括典型的RP以及较温和的中心周围RP。此外,我们的研究表明斑马鱼和人类之间存在TUBB4B纤毛功能的守恒,这使得斑马鱼比小鼠模型更适合研究视力丧失的模型系统。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Mutation of beta-tubulin 4B gene (TUBB4B) causes autosomal dominant retinitis pigmentosa with sensorineural hearing loss in a multigenerational family.

Purpose: Members of a multigenerational Canadian family presented to an inherited retinal degeneration (IRD) clinic with retinitis pigmentosa (RP) and sensorineural hearing loss, reminiscent of an Usher syndrome phenotype. Biallelic disease-causing variants in the known Usher syndrome genes were not identified. Therefore, we enrolled further family members in this study and examined whether other IRD gene variants could explain the phenotype in the family.

Methods: Family members underwent a comprehensive ophthalmic examination, including best-corrected visual acuity, direct and indirect ophthalmoscopy, fundus photography, visual field testing, spectral-domain optical coherence tomography, audiological examination, and genetic testing. Some patients also had autofluorescence imaging. Loss-of-function testing was initiated by antisense morpholino knockdown of tubb4b in zebrafish.

Results: Multimodal clinical testing in affected patients revealed an autosomal dominant late-onset presentation of RP associated with progressive, bilateral sensorineural hearing loss that occurred in the second to third decades of life with no vestibular involvement. Panel-based genetic testing revealed a heterozygous c.1168C>T, p.Arg390Trp variant in the beta-tubulin 4B gene (TUBB4B) only in affected family members. Based on in silico analysis, segregation analysis through the family, and literature evaluation, this variant is likely to be the disease-causing variant inherited in an autosomal dominant manner. We searched our local database of ~1,000 patients with IRD, and no other TUBB4B variants were identified, confirming this is a rare disease variant. Knockdown of tubb4b in zebrafish revealed cone and rod photoreceptor abnormalities in the retina and hydrocephalus in the developing brain, resulting in early larval lethality.

Conclusions: For the first time, we describe a multigenerational family with a TUBB4B gene variant p.(Arg390Trp) segregating with deaf-blindness, establishing autosomal dominant inheritance. This further confirms that the Arg390 codon is a mutation hotspot. We also expand the range of phenotypes seen with the p.(Arg390Trp) TUBB4B gene variant to include typical RP as well as a milder, pericentral RP. Furthermore, our studies suggest there is conservation of TUBB4B ciliary function between zebrafish and humans, making zebrafish a better model system for studying vision loss than the mouse model.

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来源期刊
Molecular Vision
Molecular Vision 生物-生化与分子生物学
CiteScore
4.40
自引率
0.00%
发文量
25
审稿时长
1 months
期刊介绍: Molecular Vision is a peer-reviewed journal dedicated to the dissemination of research results in molecular biology, cell biology, and the genetics of the visual system (ocular and cortical). Molecular Vision publishes articles presenting original research that has not previously been published and comprehensive articles reviewing the current status of a particular field or topic. Submissions to Molecular Vision are subjected to rigorous peer review. Molecular Vision does NOT publish preprints. For authors, Molecular Vision provides a rapid means of communicating important results. Access to Molecular Vision is free and unrestricted, allowing the widest possible audience for your article. Digital publishing allows you to use color images freely (and without fees). Additionally, you may publish animations, sounds, or other supplementary information that clarifies or supports your article. Each of the authors of an article may also list an electronic mail address (which will be updated upon request) to give interested readers easy access to authors.
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