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使用体外小基因剪接试验对非典型CNGB3变体进行全面的功能剪接分析。

Comprehensive functional splicing analysis of non-canonical CNGB3 variants using in vitro minigene splice assays.

作者信息

Rawnsley Katharina, Weisschuh Nicole, Kohl Susanne, Reuter Peggy

机构信息

Institute for Ophthalmic Research, Centre for Ophthalmology, University Hospital Tübingen, Tübingen, Germany.

出版信息

J Pathol. 2025 Jul;266(3):322-336. doi: 10.1002/path.6431. Epub 2025 Apr 30.

DOI:10.1002/path.6431
PMID:40304364
Abstract

Variants in the CNGB3 gene, encoding the B3-subunit of the cone photoreceptor cyclic nucleotide gated channel, are a major cause of autosomal recessive achromatopsia, a rare inherited retinal disease. The mutation spectrum of achromatopsia-associated CNGB3 variants comprises all types of mutations, including those that are straightforward to evaluate in molecular genetic diagnostics, such as frame-shifting, nonsense, and canonical splice site variants. Additionally, variants have been identified within splice regions outside the conserved ±1,2 splice site dinucleotides, making their potential impact on disease association challenging to interpret. This poses a major hurdle for clinical interpretation of causality between the patient's genotype and the proposed clinical diagnosis, but also for the inclusion of such patients into clinical trials for gene augmentation therapy, for which only patients with confirmed (likely) pathogenic CNGB3 variants are eligible. We here performed comprehensive genetic functional analysis of 21 candidate spliceogenic CNGB3 variants-15 reported and 6 novel variants-by means of in vitro minigene splice assays and cDNA analysis, and characterization of spliceogenic events by subcloning, Sanger-sequencing, and capillary fragment analysis. For 16 variants, an impact on splicing was confirmed, supporting the reclassification of 86% of variants of uncertain significance as likely pathogenic or pathogenic according to the ACMG/AMP guidelines. This reclassification enables the confirmation of patients' genotypes, both retrospectively and prospectively. © 2025 The Author(s). The Journal of Pathology published by John Wiley & Sons Ltd on behalf of The Pathological Society of Great Britain and Ireland.

摘要

编码视锥光感受器环核苷酸门控通道B3亚基的CNGB3基因变异是常染色体隐性遗传性全色盲的主要病因,常染色体隐性遗传性全色盲是一种罕见的遗传性视网膜疾病。与全色盲相关的CNGB3变异的突变谱包括所有类型的突变,包括那些在分子遗传学诊断中易于评估的突变,如移码突变、无义突变和典型剪接位点变异。此外,在保守的±1,2剪接位点二核苷酸之外的剪接区域内也发现了变异,这使得它们对疾病关联的潜在影响难以解释。这对患者基因型与拟议临床诊断之间因果关系的临床解释构成了重大障碍,对于将此类患者纳入基因增强治疗的临床试验也是如此,因为只有确诊(可能)致病的CNGB3变异患者才有资格参加。我们在此通过体外小基因剪接试验和cDNA分析,以及通过亚克隆、桑格测序和毛细管片段分析对剪接事件进行表征,对21种候选剪接性CNGB3变异(15种已报道的变异和6种新变异)进行了全面的基因功能分析。对于16种变异,证实了其对剪接的影响,支持根据ACMG/AMP指南将86%意义不明确的变异重新分类为可能致病或致病。这种重新分类能够回顾性和前瞻性地确认患者的基因型。© 2025作者。《病理学杂志》由约翰·威利父子有限公司代表大不列颠及爱尔兰病理学会出版。

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J Pathol. 2025 Jul;266(3):322-336. doi: 10.1002/path.6431. Epub 2025 Apr 30.
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本文引用的文献

1
Demonstration of the pathogenicity of a common non-exomic mutation in ABCA4 using iPSC-derived retinal organoids and retrospective clinical data.利用 iPSC 衍生的视网膜类器官和回顾性临床数据证明 ABCA4 常见非外显子突变的致病性。
Hum Mol Genet. 2024 Aug 6;33(16):1379-1390. doi: 10.1093/hmg/ddad176.
2
Systematic Minigene-Based Splicing Analysis and Tentative Clinical Classification of 52 CHEK2 Splice-Site Variants.基于微型基因的52种CHEK2剪接位点变异的系统剪接分析及初步临床分类
Clin Chem. 2024 Jan 4;70(1):319-338. doi: 10.1093/clinchem/hvad125.
3
Targeted sequencing and in vitro splice assays shed light on ABCA4-associated retinopathies missing heritability.
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。
HGG Adv. 2023 Oct 12;4(4):100237. doi: 10.1016/j.xhgg.2023.100237. Epub 2023 Sep 12.
4
Functional evaluation allows ACMG/AMP-based re-classification of CNGA3 variants associated with achromatopsia.功能评估允许基于ACMG/AMP对与全色盲相关的CNGA3变异进行重新分类。
Genet Med. 2023 Dec;25(12):100979. doi: 10.1016/j.gim.2023.100979. Epub 2023 Sep 6.
5
Using the ACMG/AMP framework to capture evidence related to predicted and observed impact on splicing: Recommendations from the ClinGen SVI Splicing Subgroup.使用 ACMG/AMP 框架捕捉与预测和观察到的剪接影响相关的证据:ClinGen SVI 剪接小组的建议。
Am J Hum Genet. 2023 Jul 6;110(7):1046-1067. doi: 10.1016/j.ajhg.2023.06.002. Epub 2023 Jun 22.
6
First-in-Human Gene Therapy Trial of AAV8-hCARp.hCNGB3 in Adults and Children With CNGB3-associated Achromatopsia.人类首例 AAV8-hCARp.hCNGB3 基因治疗试验在成人和儿童 CNGB3 相关性色盲症患者中的应用。
Am J Ophthalmol. 2023 Sep;253:243-251. doi: 10.1016/j.ajo.2023.05.009. Epub 2023 May 11.
7
Systematic analysis of CNGA3 splice variants identifies different mechanisms of aberrant splicing.系统分析 CNGA3 剪接变异体鉴定出不同的异常剪接机制。
Sci Rep. 2023 Feb 18;13(1):2896. doi: 10.1038/s41598-023-29452-9.
8
Whole genome sequencing for -associated disease reveals several pathogenic deep-intronic variants that are amenable to splice correction.全基因组测序用于相关疾病的研究揭示了几种致病性的深内含子变异,这些变异可以通过剪接校正来治疗。
HGG Adv. 2023 Jan 18;4(2):100181. doi: 10.1016/j.xhgg.2023.100181. eCollection 2023 Apr 13.
9
Comparison of Tools for Splice-Altering Variant Prediction Using Established Spliceogenic Variants: An End-User's Point of View.使用已确定的剪接变异体进行剪接改变变异预测工具的比较:终端用户视角
Int J Genomics. 2022 Oct 13;2022:5265686. doi: 10.1155/2022/5265686. eCollection 2022.
10
Characterising splicing defects of ABCA4 variants within exons 13-50 in patient-derived fibroblasts.在患者来源的成纤维细胞中,对 ABCA4 变异体在 13-50 外显子内的剪接缺陷进行特征分析。
Exp Eye Res. 2022 Dec;225:109276. doi: 10.1016/j.exer.2022.109276. Epub 2022 Oct 6.