The current benefit of genome sequencing compared to exome sequencing in patients with developmental or epileptic encephalopathies

Author:

Grether Anna1,Ivanovski Ivan1,Russo Martina1,Begemann Anaïs1ORCID,Steindl Katharina1,Abela Lucia2,Papik Michael1,Zweier Markus1,Oneda Beatrice1,Joset Pascal3,Rauch Anita14567ORCID

Affiliation:

1. Institute of Medical Genetics University of Zurich Zurich Switzerland

2. Division of Child Neurology University Children's Hospital Zurich Zurich Switzerland

3. Medical Genetics, Institute of Medical Genetics and Pathology University Hospital Basel Basel Switzerland

4. University Children's Hospital Zurich Zurich Switzerland

5. University of Zurich Clinical Research Priority Program (CRPP) Praeclare – Personalized prenatal and reproductive medicine Zurich Switzerland

6. University of Zurich Research Priority Program (URPP) AdaBD: Adaptive Brain Circuits in Development and Learning Zurich Switzerland

7. University of Zurich Research Priority Program (URPP) ITINERARE: Innovative Therapies in Rare Diseases Zurich Switzerland

Abstract

AbstractBackgroundAs the technology of next generation sequencing rapidly develops and costs are constantly reduced, the clinical availability of whole genome sequencing (WGS) increases. Thereby, it remains unclear what exact advantage WGS offers in comparison to whole exome sequencing (WES) for the diagnosis of genetic diseases using current technologies.MethodsTrio‐WGS was conducted for 20 patients with developmental or epileptic encephalopathies who remained undiagnosed after WES and chromosomal microarray analysis.ResultsA diagnosis was reached for four patients (20%). However, retrospectively all pathogenic variants could have been detected in a WES analysis conducted with today's methods and knowledge.ConclusionThe additional diagnostic yield of WGS versus WES is currently largely explained by new scientific insights and the general technological progress. Nevertheless, it is noteworthy that whole genome sequencing has greater potential for the analysis of small copy number and copy number neutral variants not seen with WES as well as variants in noncoding regions, especially as potentially more knowledge of the function of noncoding regions arises. We, therefore, conclude that even though today the added value of WGS versus WES seems to be limited, it may increase substantially in the future.

Funder

Schweizerischer Nationalfonds zur Förderung der Wissenschaftlichen Forschung

Universität Zürich

Publisher

Wiley

Subject

Genetics (clinical),Genetics,Molecular Biology

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