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

Author:

Steyaert WouterORCID,Sagath LydiaORCID,Demidov GermanORCID,Yépez Vicente A.ORCID,Esteve-Codina AnnaORCID,Gagneur JulienORCID,Ellwanger KorneliaORCID,Derks RonnyORCID,Weiss MarjanORCID,den Ouden Amber,van den Heuvel Simone,Swinkels Hilde,Zomer Nick,Steehouwer Marloes,O’Gorman LukeORCID,Astuti GaluhORCID,Neveling KorneliaORCID,Schüle RebeccaORCID,Xu Jishu,Synofzik MatthisORCID,Beijer DaniqueORCID,Hengel HolgerORCID,Schöls Ludger,Claeys Kristl GORCID,Baets JonathanORCID,Van de Vondel LiedeweiORCID,Ferlini AlessandraORCID,Selvatici RitaORCID,Morsy HebaORCID,Saeed Abd Elmaksoud Marwa,Straub VolkerORCID,Müller JulianeORCID,Pini VeronicaORCID,Perry Luke,Sarkozy AnnaORCID,Zaharieva IrinaORCID,Muntoni FrancescoORCID,Bugiardini EnricoORCID,Polavarapu KiranORCID,Horvath RitaORCID,Reid EvanORCID,Lochmüller HannsORCID,Spinazzi MarcoORCID,Savarese MarcoORCID, , , , ,Matalonga LeslieORCID,Laurie StevenORCID,Brunner Han G.,Graessner Holm,Beltran SergiORCID,Ossowski StephanORCID,Vissers Lisenka E.L.M.ORCID,Gilissen ChristianORCID,Hoischen AlexanderORCID

Abstract

AbstractSolve-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 tode novoand rare inherited SNVs, InDels, SVs, and STR expansions. In an additional four families, we identified a candidate disease-causing SV affecting several genes including anMCF2/FGF13fusion andPSMA3deletion. 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.

Publisher

Cold Spring Harbor Laboratory

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