纤毛症基因 CFAP410 的编码和非编码变异导致早发性非综合症视网膜变性。

K. Bujakowska, Riccardo Sangermano, Priya Gupta, Cherrell Price, Jinu Han, Julien Navarro, C. Condroyer, Emily Place, A. Antonio, Shizuo Mukai, Xavier Zanlonghi, J. Sahel, Jacque Duncan, Eric A. Pierce, Christina Zeitz, I. Audo, Rachel Huckfeldt
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摘要

摘要 遗传性视网膜变性是一种致盲性遗传疾病,具有遗传和表型高度异质性的特点。下一代测序技术在常规诊断中的应用,以及包括多模态视网膜成像在内的先进临床表型分析,促使描述新基因型-表型关联和表型扩展的报告不断增加。在本研究中,我们描述了 16 个早发性非综合征视网膜变性的家族,其中受影响的原型携带 CFAP410 的罕见双等位基因变异,而 CFAP410 是一种睫状体基因,以前曾与综合征隐性 Jeune 综合征相关。最常见的视网膜表型是视锥-视杆细胞萎缩症和视杆-视锥萎缩症,但其临床表现因发病早以及对中枢视觉功能的严重影响而趋于一致。共检测到 12 个变异(3 个致病,7 个可能致病,2 个意义不明),其中 8 个是新变异。其中一个深度内含子变异(c.373+91A>G)导致在第四内含子中产生了一个隐性剪接接受位点,随后包含了一个 200 碱基对的假外显子,并形成了过早的终止密码子。据我们所知,这是在该基因中发现的第一个可能致病的深度内含子变异。对所有已发表和新发现的 CFAP410 变异的元分析表明,CFAP410 相关表型的严重程度与已发现的致病变异之间没有明显的相关性。经常出现在综合征病例中的错义变异 p.(Arg73Pro) 也与非综合征视网膜变性有关,这一事实也支持了上述观点。这项研究丰富了CFAP410相关纤毛症的突变情况,并支持其与非综合征视网膜变性的关联,从而扩展了目前对CFAP410相关纤毛症的认识。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Coding and non-coding variants in the ciliopathy gene CFAP410 cause early-onset non-syndromic retinal degeneration.
Abstract Inherited retinal degenerations are blinding genetic disorders characterized by high genetic and phenotypic heterogeneity. The implementation of next-generation sequencing in routine diagnostics, together with advanced clinical phenotyping including multimodal retinal imaging, have contributed to the increase of reports describing novel genotype-phenotype associations and phenotypic expansions. In this study, we describe sixteen families with early-onset non-syndromic retinal degenerations in which affected probands carried rare bi-allelic variants in CFAP410, a ciliary gene previously associated with syndromic recessive Jeune syndrome. The most common retinal phenotypes were cone-rod and rod-cone dystrophies, but the clinical presentations were unified by their early onset as well as the severe impact on central visual function. Twelve variants were detected (three pathogenic, seven likely pathogenic, two of uncertain significance), eight of which were novel. One deep intronic change, c.373+91A>G, led to the creation of a cryptic splice acceptor site in intron four, followed by the inclusion of a 200-base pair pseudoexon and subsequent premature stop codon formation. To our knowledge this is the first likely pathogenic deep-intronic variant identified in this gene. Meta-analysis of all published and novel CFAP410 variants revealed no clear correlation between the severity of the CFAP410-associated phenotypes and the identified causal variants. This is supported by the fact that the frequently encountered missense variant p.(Arg73Pro), often found in syndromic cases, was also associated with non-syndromic retinal degeneration. This study expands the current knowledge of CFAP410-associated ciliopathy by enriching its mutational landscape and supports its association with non-syndromic retinal degeneration.
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