Genome sequencing in families with congenital limb malformations

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作者
Jonas Elsner
Martin A. Mensah
Manuel Holtgrewe
Jakob Hertzberg
Stefania Bigoni
Andreas Busche
Marie Coutelier
Deepthi C. de Silva
Nursel Elçioglu
Isabel Filges
Erica Gerkes
Katta M. Girisha
Luitgard Graul-Neumann
Aleksander Jamsheer
Peter Krawitz
Ingo Kurth
Susanne Markus
Andre Megarbane
André Reis
Miriam S. Reuter
Daniel Svoboda
Christopher Teller
Beyhan Tuysuz
Seval Türkmen
Meredith Wilson
Rixa Woitschach
Inga Vater
Almuth Caliebe
Wiebke Hülsemann
Denise Horn
Stefan Mundlos
Malte Spielmann
机构
[1] Charité-Universitätsmedizin Berlin,Institute of Medical Genetics and Human Genetics
[2] Corporate member of Freie Universität Berlin and Humboldt-Universität zu Berlin,Core Unit Bioinformatics
[3] Berlin Institute of Health at Charité – Universitätsmedizin Berlin,Medical Genetics Unit, Department of Mother and Child
[4] Berlin Institute of Health (BIH),Institut Für Humangenetik
[5] Max Planck Institute for Molecular Genetics,Department of Human Genetics, Faculty of Medicine
[6] RG Development and Disease,Faculty of Medicine
[7] Ferrara Sant’Anna University Hospital,Department of Pediatric Genetics
[8] Universitätsklinikum Münster,Institut für Medizinische Genetik und Pathologie
[9] Jewish General Hospital,Department of Genetics
[10] McGill University,Department of Medical Genetics
[11] University of Kelaniya,Department of Medical Genetics
[12] Marmara University Medical School,Institute for Genomic Statistics and Bioinformatics
[13] Eastern Mediterranean University Medical School,Institute of Human Genetics, Medical Faculty
[14] Universitätsspital Basel,Department of Human Genetics, Gilbert and Rose
[15] University of Groningen,Marie Chagoury School of Medicine
[16] University Medical Center Groningen,Institute of Human Genetics
[17] Kasturba Medical College,Department of Pediatric Genetics, Cerrahpasa Medical Faculty
[18] Manipal Academy of Higher Education,Genetic Medicine
[19] Poznan University of Medical Sciences,Institute of Human Genetics
[20] University of Bonn,Institute of Human Genetics
[21] RWTH Aachen University Hospital,Institute of Human Genetics
[22] Fachärztin Für Humangenetik,undefined
[23] Lebanese American University,undefined
[24] Friedrich-Alexander-Universität Erlangen-Nürnberg,undefined
[25] Kinderhandchirurgie,undefined
[26] Medizinische Fakultät Mannheim der Universität Heidelberg,undefined
[27] Synlab MVZ Bad Nauheim,undefined
[28] Istanbul University-Cerrahpasa,undefined
[29] National Center of Genetics (NCG),undefined
[30] Laboratoire National de Santé 1,undefined
[31] Children’s Hospital at Westmead,undefined
[32] Paediatrics and Child Health,undefined
[33] University Medical Center Hamburg,undefined
[34] University of Kiel,undefined
[35] Katholisches Kinderkrankenhaus Wilhelmstift,undefined
[36] University of Lübeck,undefined
来源
Human Genetics | 2021年 / 140卷
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摘要
The extensive clinical and genetic heterogeneity of congenital limb malformation calls for comprehensive genome-wide analysis of genetic variation. Genome sequencing (GS) has the potential to identify all genetic variants. Here we aim to determine the diagnostic potential of GS as a comprehensive one-test-for-all strategy in a cohort of undiagnosed patients with congenital limb malformations. We collected 69 cases (64 trios, 1 duo, 5 singletons) with congenital limb malformations with no molecular diagnosis after standard clinical genetic testing and performed genome sequencing. We also developed a framework to identify potential noncoding pathogenic variants. We identified likely pathogenic/disease-associated variants in 12 cases (17.4%) including four in known disease genes, and one repeat expansion in HOXD13. In three unrelated cases with ectrodactyly, we identified likely pathogenic variants in UBA2, establishing it as a novel disease gene. In addition, we found two complex structural variants (3%). We also identified likely causative variants in three novel high confidence candidate genes. We were not able to identify any noncoding variants. GS is a powerful strategy to identify all types of genomic variants associated with congenital limb malformation, including repeat expansions and complex structural variants missed by standard diagnostic approaches. In this cohort, no causative noncoding SNVs could be identified.
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页码:1229 / 1239
页数:10
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