Abstract
Major efforts are underway to systematically define the somatic and germline genetic variations causally associated with disease. Genome-wide genetic analysis of actual clinical samples is, however, limited by the paucity of genomic DNA available. Here we have tested the fidelity and genome representation of phi29 polymerase-based genome amplification (phi29MDA) using direct sequencing and high density oligonucleotide arrays probing >10,000 SNP alleles. Genome representation was comprehensive and estimated to be 99.82% complete, although six regions encompassing a maximum of 5.62 Mb failed to amplify. There was no degradation in the accuracy of SNP genotyping and, in direct sequencing experiments sampling 500,000 bp, the estimated error rate (9.5 x 10(-6)) was the same as in paired unamplified samples. The detection of cancer-associated loss of heterozygosity and copy number changes, including homozygous deletion and gene amplification, were similarly robust. These results suggest that phi29MDA yields high fidelity, near-complete genome representation suitable for high resolution genetic analysis.
MeSH Terms
Alleles
Bacillus Phages/enzymology
Cell Line
Cell Line, Tumor
Chromosome Deletion
DNA-Directed DNA Polymerase/metabolism
Gene Dosage
Genome, Human
Genomics/methods
Genotype
Homozygote
Humans
Loss of Heterozygosity/genetics
Oligonucleotide Array Sequence Analysis
Polymerase Chain Reaction/methods
Polymorphism, Single Nucleotide/genetics
Reproducibility of Results
Sensitivity and Specificity
Sequence Analysis, DNA
Chemicals
DNA-Directed DNA Polymerase
Authors & Affiliations
13 authors, click to expand affiliations / ORCID
Paez J Guillermo
Department of Medical Oncology, Dana-Farber Cancer Institute, Boston, MA 02115, USA.
Lin Ming
Beroukhim Rameen
Lee Jeffrey C
Zhao Xiaojun
Richter Daniel J
Gabriel Stacey
Herman Paula
Sasaki Hidefumi
Altshuler David
Li Cheng
Meyerson Matthew
Sellers William R
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