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Improving genetic diagnosis in Mendelian disease with transcriptome sequencing.


ABSTRACT: Exome and whole-genome sequencing are becoming increasingly routine approaches in Mendelian disease diagnosis. Despite their success, the current diagnostic rate for genomic analyses across a variety of rare diseases is approximately 25 to 50%. We explore the utility of transcriptome sequencing [RNA sequencing (RNA-seq)] as a complementary diagnostic tool in a cohort of 50 patients with genetically undiagnosed rare muscle disorders. We describe an integrated approach to analyze patient muscle RNA-seq, leveraging an analysis framework focused on the detection of transcript-level changes that are unique to the patient compared to more than 180 control skeletal muscle samples. We demonstrate the power of RNA-seq to validate candidate splice-disrupting mutations and to identify splice-altering variants in both exonic and deep intronic regions, yielding an overall diagnosis rate of 35%. We also report the discovery of a highly recurrent de novo intronic mutation in COL6A1 that results in a dominantly acting splice-gain event, disrupting the critical glycine repeat motif of the triple helical domain. We identify this pathogenic variant in a total of 27 genetically unsolved patients in an external collagen VI-like dystrophy cohort, thus explaining approximately 25% of patients clinically suggestive of having collagen VI dystrophy in whom prior genetic analysis is negative. Overall, this study represents a large systematic application of transcriptome sequencing to rare disease diagnosis and highlights its utility for the detection and interpretation of variants missed by current standard diagnostic approaches.

SUBMITTER: Cummings BB 

PROVIDER: S-EPMC5548421 | biostudies-literature | 2017 Apr

REPOSITORIES: biostudies-literature

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Improving genetic diagnosis in Mendelian disease with transcriptome sequencing.

Cummings Beryl B BB   Marshall Jamie L JL   Tukiainen Taru T   Lek Monkol M   Donkervoort Sandra S   Foley A Reghan AR   Bolduc Veronique V   Waddell Leigh B LB   Sandaradura Sarah A SA   O'Grady Gina L GL   Estrella Elicia E   Reddy Hemakumar M HM   Zhao Fengmei F   Weisburd Ben B   Karczewski Konrad J KJ   O'Donnell-Luria Anne H AH   Birnbaum Daniel D   Sarkozy Anna A   Hu Ying Y   Gonorazky Hernan H   Claeys Kristl K   Joshi Himanshu H   Bournazos Adam A   Oates Emily C EC   Ghaoui Roula R   Davis Mark R MR   Davis Mark R MR   Laing Nigel G NG   Topf Ana A   Kang Peter B PB   Beggs Alan H AH   North Kathryn N KN   Straub Volker V   Dowling James J JJ   Muntoni Francesco F   Clarke Nigel F NF   Cooper Sandra T ST   Bönnemann Carsten G CG   MacArthur Daniel G DG  

Science translational medicine 20170401 386


Exome and whole-genome sequencing are becoming increasingly routine approaches in Mendelian disease diagnosis. Despite their success, the current diagnostic rate for genomic analyses across a variety of rare diseases is approximately 25 to 50%. We explore the utility of transcriptome sequencing [RNA sequencing (RNA-seq)] as a complementary diagnostic tool in a cohort of 50 patients with genetically undiagnosed rare muscle disorders. We describe an integrated approach to analyze patient muscle RN  ...[more]

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