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靶向测序和体外剪接分析揭示了 ABCA4 相关性视网膜病变的遗传性缺失。

Targeted sequencing and in vitro splice assays shed light on ABCA4-associated retinopathies missing heritability.

机构信息

Department of Human Genetics, Radboud University Medical Center, Nijmegen, the Netherlands.

Department of Human Genetics, Radboud University Medical Center, Nijmegen, the Netherlands; Max Planck Institute for Psycholinguistics, Nijmegen, the Netherlands.

出版信息

HGG Adv. 2023 Oct 12;4(4):100237. doi: 10.1016/j.xhgg.2023.100237. Epub 2023 Sep 12.

Abstract

The ABCA4 gene is the most frequently mutated Mendelian retinopathy-associated gene. Biallelic variants lead to a variety of phenotypes, however, for thousands of cases the underlying variants remain unknown. Here, we aim to shed further light on the missing heritability of ABCA4-associated retinopathy by analyzing a large cohort of macular dystrophy probands. A total of 858 probands were collected from 26 centers, of whom 722 carried no or one pathogenic ABCA4 variant, while 136 cases carried two ABCA4 alleles, one of which was a frequent mild variant, suggesting that deep-intronic variants (DIVs) or other cis-modifiers might have been missed. After single molecule molecular inversion probes (smMIPs)-based sequencing of the complete 128-kb ABCA4 locus, the effect of putative splice variants was assessed in vitro by midigene splice assays in HEK293T cells. The breakpoints of copy number variants (CNVs) were determined by junction PCR and Sanger sequencing. ABCA4 sequence analysis solved 207 of 520 (39.8%) naive or unsolved cases and 70 of 202 (34.7%) monoallelic cases, while additional causal variants were identified in 54 of 136 (39.7%) probands carrying two variants. Seven novel DIVs and six novel non-canonical splice site variants were detected in a total of 35 alleles and characterized, including the c.6283-321C>G variant leading to a complex splicing defect. Additionally, four novel CNVs were identified and characterized in five alleles. These results confirm that smMIPs-based sequencing of the complete ABCA4 gene provides a cost-effective method to genetically solve retinopathy cases and that several rare structural and splice altering defects remain undiscovered in Stargardt disease cases.

摘要

ABCA4 基因是最常发生突变的孟德尔相关性视网膜病变相关基因。双等位基因变异导致多种表型,但对于数千例病例,其潜在变异仍然未知。在这里,我们旨在通过分析一大组黄斑营养不良先证者,进一步阐明 ABCA4 相关性视网膜病变的遗传缺失。总共从 26 个中心收集了 858 名先证者,其中 722 名先证者没有或只有一个致病性 ABCA4 变异,而 136 例携带两个 ABCA4 等位基因,其中一个是常见的轻度变异,这表明可能错过了深内含子变异(DIV)或其他顺式修饰因子。在基于单分子分子反转探针(smMIPs)的完整 128-kb ABCA4 基因座测序后,通过在 HEK293T 细胞中的 midigene 剪接测定评估假定剪接变体的影响。通过连接 PCR 和 Sanger 测序确定拷贝数变异(CNV)的断点。ABCA4 序列分析解决了 520 个(39.8%)初筛或未解决病例中的 207 个和 202 个单等位基因病例中的 70 个,而在携带两个变异的 136 个先证者中的 54 个中确定了其他因果变异。在总共 35 个等位基因中检测到并表征了 7 个新的 DIV 和 6 个新的非规范剪接位点变异,包括导致复杂剪接缺陷的 c.6283-321C>G 变异。此外,在 5 个等位基因中还鉴定并表征了 4 个新的 CNV。这些结果证实,基于 smMIPs 的完整 ABCA4 基因测序提供了一种具有成本效益的方法来遗传解决视网膜病变病例,并且在 Stargardt 病病例中仍然存在一些罕见的结构和剪接改变缺陷未被发现。

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