Optical genome mapping identifies structural variants in potentially new cancer predisposition candidate genes in pediatric cancer patients

Author:

Wagener Rabea12ORCID,Brandes Danielle1,Jung Marie1,Huetzen Maxim A.3,Bergmann Anke K.4,Panier Stephanie35,Picard Daniel1,Fischer Ute12,Jachimowicz Ron D.3678,Borkhardt Arndt12ORCID,Brozou Triantafyllia1

Affiliation:

1. Department of Pediatric Oncology, Hematology and Clinical Immunology, Medical Faculty Heinrich Heine University Düsseldorf Düsseldorf Germany

2. German Cancer Consortium (DKTK), partner site Essen/Düsseldorf Düsseldorf Germany

3. Max Planck Research Group Mechanisms of DNA Repair, Max Planck Institute for Biology of Ageing Cologne Germany

4. Institute of Human Genetics, Hannover Medical School (MHH) Hannover Germany

5. Institute for Genome Stability in Aging and Disease, Medical Faculty, University of Cologne Cologne Germany

6. Department I of Internal Medicine Center for Integrated Oncology Aachen Bonn Cologne and Düsseldorf, Faculty of Medicine and University Hospital Cologne, University of Cologne Cologne Germany

7. Cologne Excellence Cluster on Cellular Stress Responses in Ageing‐Associated Diseases University of Cologne Cologne Germany

8. Center for Molecular Medicine Cologne University of Cologne Cologne Germany

Abstract

AbstractGenetic predisposition is one of the major risk factors for pediatric cancer, with ~10% of children being carriers of a predisposing germline alteration. It is likely that this is the tip of the iceberg and many children are underdiagnosed, as most of the analysis focuses on single or short nucleotide variants, not considering the full spectrum of DNA alterations. Hence, we applied optical genome mapping (OGM) to our cohort of 34 pediatric cancer patients to perform an unbiased germline screening and analyze the frequency of structural variants (SVs) and their impact on cancer predisposition. All children were clinically highly suspicious for germline alterations (concomitant conditions or congenital anomalies, positive family cancer history, particular cancer type, synchronous or metachronous tumors), but whole exome sequencing (WES) had failed to detect pathogenic variants in cancer predisposing genes. OGM detected a median of 49 rare SVs (range 27‐149) per patient. By analysis of 18 patient‐parent trios, we identified three de novo SVs. Moreover, we discovered a likely pathogenic deletion of exon 3 in the known cancer predisposition gene BRCA2, and identified a duplication in RPA1, which might represent a new cancer predisposition gene. We conclude that optical genome mapping is a suitable tool for detecting potentially predisposing SVs in addition to WES in pediatric cancer patients.

Funder

Deutsche Forschungsgemeinschaft

Deutsche Krebshilfe

Publisher

Wiley

Subject

Cancer Research,Oncology

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