2,832 个 JAG1 变体的功能表征支持 Alagille 综合征的重新分类,并改进了对临床变体解释的指导。

IF 8.1 1区 生物学 Q1 GENETICS & HEREDITY American journal of human genetics Pub Date : 2024-08-08 Epub Date: 2024-07-22 DOI:10.1016/j.ajhg.2024.06.011
Melissa A Gilbert, Ernest Keefer-Jacques, Tanaya Jadhav, Daniel Antfolk, Qianqian Ming, Nicolette Valente, Grace Tzun-Wen Shaw, Christopher J Sottolano, Grace Matwijec, Vincent C Luca, Kathleen M Loomes, Ramakrishnan Rajagopalan, Tristan J Hayeck, Nancy B Spinner
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引用次数: 0

摘要

JAG1 基因中的致病变体是导致多系统疾病 Alagille 综合征的主要原因。虽然这种疾病的变异检出率很高,但错义变异的分类存在不确定性,导致诊断率降低。因此,在已报道的 JAG1 错义变异中,高达 85% 的变异分类不确定或相互矛盾。我们生成了一个包含 2,832 个 JAG1 外显子 1-7 内核苷酸变异的文库,该区域报告了大量的错义变异,我们还设计了一种高通量检测方法来测量 JAG1 膜表达,这是正常功能的必要条件。在使用变体库中的一组 175 个已知或预测的致病变体和良性变体进行校准后,486 个变体被鉴定为功能异常(n = 277 个异常变体和 n = 209 个可能异常变体),其中 439 个(90.3%)为错义变体。我们确定了特定残基的膜表达差异,这表明野生型残基的缺失本身并不会导致致病性,这一发现得到了结构建模数据的支持,并对 Alagille 综合征和全球其他疾病基因的临床变异体分类产生了广泛的影响。在接受临床或研究测试的 144 个不确定变异中,27 个有功能异常的膜表达,纳入我们的数据后,26 个被重新分类为可能致病的变异。功能证据增强了基因组变异的分类,减少了不确定性,提高了诊断水平。在 JAG1 变体重新分类过程中纳入这一功能证据库将极大地影响变体致病性的确定,从而对阿拉吉尔综合征的分子诊断产生重要影响。
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Functional characterization of 2,832 JAG1 variants supports reclassification for Alagille syndrome and improves guidance for clinical variant interpretation.

Pathogenic variants in the JAG1 gene are a primary cause of the multi-system disorder Alagille syndrome. Although variant detection rates are high for this disease, there is uncertainty associated with the classification of missense variants that leads to reduced diagnostic yield. Consequently, up to 85% of reported JAG1 missense variants have uncertain or conflicting classifications. We generated a library of 2,832 JAG1 nucleotide variants within exons 1-7, a region with a high number of reported missense variants, and designed a high-throughput assay to measure JAG1 membrane expression, a requirement for normal function. After calibration using a set of 175 known or predicted pathogenic and benign variants included within the variant library, 486 variants were characterized as functionally abnormal (n = 277 abnormal and n = 209 likely abnormal), of which 439 (90.3%) were missense. We identified divergent membrane expression occurring at specific residues, indicating that loss of the wild-type residue itself does not drive pathogenicity, a finding supported by structural modeling data and with broad implications for clinical variant classification both for Alagille syndrome and globally across other disease genes. Of 144 uncertain variants reported in patients undergoing clinical or research testing, 27 had functionally abnormal membrane expression, and inclusion of our data resulted in the reclassification of 26 to likely pathogenic. Functional evidence augments the classification of genomic variants, reducing uncertainty and improving diagnostics. Inclusion of this repository of functional evidence during JAG1 variant reclassification will significantly affect resolution of variant pathogenicity, making a critical impact on the molecular diagnosis of Alagille syndrome.

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来源期刊
CiteScore
14.70
自引率
4.10%
发文量
185
审稿时长
1 months
期刊介绍: The American Journal of Human Genetics (AJHG) is a monthly journal published by Cell Press, chosen by The American Society of Human Genetics (ASHG) as its premier publication starting from January 2008. AJHG represents Cell Press's first society-owned journal, and both ASHG and Cell Press anticipate significant synergies between AJHG content and that of other Cell Press titles.
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