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通过高保真长读长基因组测序揭示未确诊的罕见病病例

Unravelling undiagnosed rare disease cases by HiFi long-read genome sequencing.

作者信息

Steyaert Wouter, Sagath Lydia, Demidov German, Yépez Vicente A, Esteve-Codina Anna, Gagneur Julien, Ellwanger Kornelia, Derks Ronny, Weiss Marjan, den Ouden Amber, van den Heuvel Simone, Swinkels Hilde, Zomer Nick, Steehouwer Marloes, O'Gorman Luke, Astuti Galuh, Neveling Kornelia, Schüle Rebecca, Xu Jishu, Synofzik Matthis, Beijer Danique, Hengel Holger, Schöls Ludger, Claeys Kristl G, Baets Jonathan, Van de Vondel Liedewei, Ferlini Alessandra, Selvatici Rita, Morsy Heba, Saeed Abd Elmaksoud Marwa, Straub Volker, Müller Juliane, Pini Veronica, Perry Luke, Sarkozy Anna, Zaharieva Irina, Muntoni Francesco, Bugiardini Enrico, Polavarapu Kiran, Horvath Rita, Reid Evan, Lochmüller Hanns, Spinazzi Marco, Savarese Marco, Matalonga Leslie, Laurie Steven, Brunner Han G, Graessner Holm, Beltran Sergi, Ossowski Stephan, Vissers Lisenka E L M, Gilissen Christian, Hoischen Alexander

出版信息

medRxiv. 2024 May 4:2024.05.03.24305331. doi: 10.1101/2024.05.03.24305331.

Abstract

Solve-RD is a pan-European rare disease (RD) research program that aims to identify disease-causing genetic variants in previously undiagnosed RD families. We utilised 10-fold coverage HiFi long-read sequencing (LRS) for detecting causative structural variants (SVs), single nucleotide variants (SNVs), insertion-deletions (InDels), and short tandem repeat (STR) expansions in extensively studied RD families without clear molecular diagnoses. Our cohort includes 293 individuals from 114 genetically undiagnosed RD families selected by European Rare Disease Network (ERN) experts. Of these, 21 families were affected by so-called 'unsolvable' syndromes for which genetic causes remain unknown, and 93 families with at least one individual affected by a rare neurological, neuromuscular, or epilepsy disorder without genetic diagnosis despite extensive prior testing. Clinical interpretation and orthogonal validation of variants in known disease genes yielded thirteen novel genetic diagnoses due to and rare inherited SNVs, InDels, SVs, and STR expansions. In an additional four families, we identified a candidate disease-causing SV affecting several genes including an / fusion and deletion. However, no common genetic cause was identified in any of the 'unsolvable' syndromes. Taken together, we found (likely) disease-causing genetic variants in 13.0% of previously unsolved families and additional candidate disease-causing SVs in another 4.3% of these families. In conclusion, our results demonstrate the added value of HiFi long-read genome sequencing in undiagnosed rare diseases.

摘要

Solve-RD是一项泛欧洲罕见病(RD)研究项目,旨在识别先前未确诊的RD家族中导致疾病的基因变异。我们利用10倍覆盖度的高保真长读长测序(LRS)来检测经过广泛研究但无明确分子诊断结果的RD家族中的致病结构变异(SVs)、单核苷酸变异(SNVs)、插入缺失(InDels)和短串联重复序列(STR)扩增。我们的队列包括来自114个经欧洲罕见病网络(ERN)专家挑选的未进行基因诊断的RD家族的293名个体。其中,21个家族受所谓“无法解决”的综合征影响,其遗传病因尚不清楚,93个家族中至少有一名个体患有罕见的神经、神经肌肉或癫痫疾病,尽管之前进行了广泛检测,但仍未得到基因诊断。对已知疾病基因中的变异进行临床解读和正交验证,由于罕见的遗传性SNVs、InDels、SVs和STR扩增,得出了13种新的基因诊断结果。在另外4个家族中,我们鉴定出一个影响多个基因的候选致病SV,包括一个 / 融合和 缺失。然而,在任何“无法解决”的综合征中均未发现共同的遗传病因。综合来看,我们在13.0%的先前未解决的家族中发现了(可能)致病的基因变异,在另外4.3%的这些家族中发现了额外的候选致病SV。总之,我们的结果证明了高保真长读长基因组测序在未确诊的罕见病中的附加价值。

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