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生物银行中远距离亲缘关系的检测,以鉴定孟德尔疾病的未确诊病例,如长 QT 综合征。

Detection of distant relatedness in biobanks to identify undiagnosed cases of Mendelian disease as applied to Long QT syndrome.

机构信息

Division of Cardiovascular Medicine, Department of Medicine, Vanderbilt University Medical Center, Nashville, TN, 37232, USA.

Division of Genetic Medicine, Department of Medicine, Vanderbilt University Medical Center, Nashville, TN, 37232, USA.

出版信息

Nat Commun. 2024 Aug 29;15(1):7507. doi: 10.1038/s41467-024-51977-4.

Abstract

Rare genetic diseases are typically studied in referral populations, resulting in underdiagnosis and biased assessment of penetrance and phenotype. To address this, we develop a generalizable method of genotype inference based on distant relatedness and deploy this to identify undiagnosed Type 5 Long QT Syndrome (LQT5) rare variant carriers in a non-referral population. We identify 9 LQT5 families referred to a single specialty clinic, each carrying p.Asp76Asn, the most common LQT5 variant. We uncover recent common ancestry and a single shared haplotype among probands. Application to a non-referral population of 69,819 BioVU biobank subjects identifies 22 additional subjects sharing this haplotype, which we confirm to carry p.Asp76Asn. Referral and non-referral carriers have prolonged QT interval corrected for heart rate (QTc) compared to controls, and, among carriers, the QTc polygenic score is independently associated with QTc prolongation. Thus, our innovative analysis of shared chromosomal segments identifies undiagnosed cases of genetic disease and refines the understanding of LQT5 penetrance and phenotype.

摘要

罕见遗传病通常在转诊人群中进行研究,导致诊断不足和对外显率和表型的偏颇评估。为了解决这个问题,我们开发了一种基于远距离亲缘关系的可推广的基因型推断方法,并将其应用于在非转诊人群中识别未诊断的 5 型长 QT 综合征(LQT5)罕见变异携带者。我们在一个单一的专业诊所中识别了 9 个 LQT5 家族,每个家族都携带最常见的 LQT5 变异 p.Asp76Asn。我们发现先证者之间存在最近的共同祖先和单一的共享单倍型。将该方法应用于 69819 名 BioVU 生物库受试者的非转诊人群中,确定了另外 22 名携带该单倍型的受试者,我们证实他们携带 p.Asp76Asn。与对照组相比,转诊和非转诊携带者的心率校正 QT 间期(QTc)延长,并且在携带者中,QTc 多基因评分与 QTc 延长独立相关。因此,我们对共享染色体片段的创新性分析确定了未诊断的遗传疾病病例,并完善了对 LQT5 外显率和表型的理解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fe3c/11362435/4ae31ff48744/41467_2024_51977_Fig1_HTML.jpg

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