Detecting PKD1 variants in polycystic kidney disease patients by single-molecule long-read sequencing

Daniel M Borràs, Rolf Vossen, Michael Liem, Henk P J Buermans, Hans Dauwerse, Dave van Heusden, Ron T Gansevoort, Johan T den Dunnen, Bart Janssen, Dorien J M Peters, Monique Losekoot, Seyed Yahya Anvar*

*Corresponding author for this work

Research output: Contribution to journalArticleAcademicpeer-review

43 Citations (Scopus)
305 Downloads (Pure)

Abstract

A genetic diagnosis of autosomal-dominant polycystic kidney disease (ADPKD) is challenging due to allelic heterogeneity, high GC content, and homology of the PKD1 gene with six pseudogenes. Short-read next-generation sequencing approaches, such as whole-genome sequencing and whole-exome sequencing, often fail at reliably characterizing complex regions such as PKD1. However, long-read single-molecule sequencing has been shown to be an alternative strategy that could overcome PKD1 complexities and discriminate between homologous regions of PKD1 and its pseudogenes. In this study, we present the increased power of resolution for complex regions using long-read sequencing to characterize a cohort of 19 patients with ADPKD. Our approach provided high sensitivity in identifying PKD1 pathogenic variants, diagnosing 94.7% of the patients. We show that reliable screening of ADPKD patients in a single test without interference of PKD1 homologous sequences, commonly introduced by residual amplification of PKD1 pseudogenes, by direct long-read sequencing is now possible. This strategy can be implemented in diagnostics and is highly suitable to sequence and resolve complex genomic regions that are of clinical relevance.

Original languageEnglish
Pages (from-to)870-879
Number of pages10
JournalHuman Mutation
Volume38
Issue number7
Early online date4-Apr-2017
DOIs
Publication statusPublished - Jul-2017

Keywords

  • ADPKD
  • complex genomic regions
  • DNA diagnostics
  • long-read sequencing
  • PacBio
  • PKD1
  • single-molecule real-time sequencing
  • variant detection
  • WHOLE-GENOME
  • MENDELIAN DISORDERS
  • GENE
  • DIAGNOSTICS
  • EXOME
  • IDENTIFICATION
  • MUTATIONS

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