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Improving genetic diagnosis in Mendelian disease with transcriptome sequencing

Science Translational Medicine · 2017 · Vol. 9(386)
Beryl B. CummingsJamie L. MarshallTaru TukiainenMonkol LekSandra DonkervoortA. Reghan FoleyVéronique BolducLeigh B. WaddellSarah A. SandaraduraGina O’GradyElicia EstrellaHemakumar M. ReddyFengmei ZhaoBen WeisburdKonrad J. KarczewskiAnne O’Donnell‐LuriaDaniel BirnbaumAnna SárközyYing HuHernán GonorazkyKristl G. ClaeysHimanshu JoshiAdam BournazosEmily C. OatesRoula GhaouiMark R. DavisNigel G. LaingAna TöpfPeter B. KangAlan H. BeggsKathryn N. NorthVolker StraubJames J. DowlingFrancesco MuntoniNigel F. ClarkeSandra T. CooperCarsten G. BönnemannDaniel G. MacArthur

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 <i>COL6A1</i> 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.

Genomics and Rare DiseasesGenetic factors in colorectal cancerRNA modifications and cancerTranscriptomeMendelian inheritanceDiseaseBiologyGeneticsDNA sequencingGenetic diagnosisComputational biologyBioinformaticsMedicine

MeSH terms

HumansMuscular DiseasesMutationCollagen Type VIHigh-Throughput Nucleotide SequencingTranscriptome

Funding

  • Broad Institute
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References
RNA-Seq: a revolutionary tool for transcriptomics
Nature Reviews Genetics · 2008 · 13,223 citations
A global reference for human genetic variation
Nature · 2015 · 19,538 citations
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Improving genetic diagnosis in Mendelian disease with transcriptome sequencing · Scinovex