Nucleotide-resolution analysis of structural variants using BreakSeq and a breakpoint library

Item Type Journal Article
Author Hugo Y K Lam
Author Xinmeng Jasmine Mu
Author Adrian M Stütz
Author Andrea Tanzer
Author Philip D Cayting
Author Michael Snyder
Author Philip M Kim
Author Jan O Korbel
Author Mark B Gerstein
URL http://www.ncbi.nlm.nih.gov/pubmed/20037582
Publication Nature Biotechnology
ISSN 1546-1696
Date Dec 27, 2009
Extra PMID: 20037582
Journal Abbr Nat Biotechnol
DOI 10.1038/nbt.1600
Accessed 2010-01-01 14:11:33
Library Catalog NCBI PubMed
Abstract Structural variants (SVs) are a major source of human genomic variation; however, characterizing them at nucleotide resolution remains challenging. Here we assemble a library of breakpoints at nucleotide resolution from collating and standardizing ~2,000 published SVs. For each breakpoint, we infer its ancestral state (through comparison to primate genomes) and its mechanism of formation (e.g., nonallelic homologous recombination, NAHR). We characterize breakpoint sequences with respect to genomic landmarks, chromosomal location, sequence motifs and physical properties, finding that the occurrence of insertions and deletions is more balanced than previously reported and that NAHR-formed breakpoints are associated with relatively rigid, stable DNA helices. Finally, we demonstrate an approach, BreakSeq, for scanning the reads from short-read sequenced genomes against our breakpoint library to accurately identify previously overlooked SVs, which we then validate by PCR. As new data become available, we expect our BreakSeq approach will become more sensitive and facilitate rapid SV genotyping of personal genomes.
Title Nucleotide-resolution analysis of structural variants using BreakSeq and a breakpoint library
Date Added 2009-01-01 09:11
Date Modified 2009-01-01 09:11