| Literature DB >> 25066732 |
Vera Binder1, Christoph Bartenhagen, Vera Okpanyi, Michael Gombert, Birte Moehlendick, Bianca Behrens, Hans-Ulrich Klein, Harald Rieder, Pina Fanny Ida Krell, Martin Dugas, Nikolas Hendrik Stoecklein, Arndt Borkhardt.
Abstract
Unbiased amplification of the whole-genome amplification (WGA) of single cells is crucial to study cancer evolution and genetic heterogeneity, but is challenging due to the high complexity of the human genome. Here, we present a new workflow combining an efficient adapter-linker PCR-based WGA method with second-generation sequencing. This approach allows comparison of single cells at base pair resolution. Amplification recovered up to 74% of the human genome. Copy-number variants and loss of heterozygosity detected in single cell genomes showed concordance of up to 99% to pooled genomic DNA. Allele frequencies of mutations could be determined accurately due to an allele dropout rate of only 2%, clearly demonstrating the low bias of our PCR-based WGA approach. Sequencing with paired-end reads allowed genome-wide analysis of structural variants. By direct comparison to other WGA methods, we further endorse its suitability to analyze genetic heterogeneity.Entities:
Keywords: CNV; LOH; allele dropout rate; single cell; whole-genome amplification
Mesh:
Year: 2014 PMID: 25066732 DOI: 10.1002/humu.22625
Source DB: PubMed Journal: Hum Mutat ISSN: 1059-7794 Impact factor: 4.878