外显子组测序
先证者
遗传学
生物
外显子组
DNA测序
医学遗传学
计算生物学
全基因组测序
基因组
基因
生物信息学
突变
作者
Nicole Weisschuh,Pascale Mazzola,Theresia Zuleger,Karin Schaeferhoff,Laura Kühlewein,Friederike Kortüm,Dennis Witt,Alexandra Liebmann,Ruth Falb,Lisa Pohl,Milda Reith,Lara G. Stühn,Miriam Bertrand,Amelie J. Müller,Nicolas Casadei,Olga Kelemen,Carina Kelbsch,Christoph Kernstock,Paul Richter,Françoise Sadler
标识
DOI:10.1136/jmg-2023-109470
摘要
Purpose Genome sequencing (GS) is expected to reduce the diagnostic gap in rare disease genetics. We aimed to evaluate a scalable framework for genome-based analyses ‘beyond the exome’ in regular care of patients with inherited retinal degeneration (IRD) or inherited optic neuropathy (ION). Methods PCR-free short-read GS was performed on 1000 consecutive probands with IRD/ION in routine diagnostics. Complementary whole-blood RNA-sequencing (RNA-seq) was done in a subset of 74 patients. An open-source bioinformatics analysis pipeline was optimised for structural variant (SV) calling and combined RNA/DNA variation interpretation. Results A definite genetic diagnosis was established in 57.4% of cases. For another 16.7%, variants of uncertain significance were identified in known IRD/ION genes, while the underlying genetic cause remained unresolved in 25.9%. SVs or alterations in non-coding genomic regions made up for 12.7% of the observed variants. The RNA-seq studies supported the classification of two unclear variants. Conclusion GS is feasible in clinical practice and reliably identifies causal variants in a substantial proportion of individuals. GS extends the diagnostic yield to rare non-coding variants and enables precise determination of SVs. The added diagnostic value of RNA-seq is limited by low expression levels of the major IRD disease genes in blood.
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