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Clustering and Alignment of Polymorphic Sequences for HLA-DRB1 Genotyping
Authors
A McKenna
A van Dijk
+34 more
AA Rossini
AK Lancaster
C Gabriel
C Karanes
C Lind
C Wang
CE Voorter
CL Holcomb
G Bentley
Gaia Bellone
Gualtiero Colombo
H Erlich
J Ng
J Richards
J Robinson
JM Rothberg
JP Achkar
Kathryn Roeder
KK Ballen
L Becquemont
L Breiman
M Hamady
M Maiers
Massimo Trucco
RL Erlich
S Kurtz
S Lafon
SA Dunbar
SM Lank
SM Lank
Steven Ringquist
T Shiina
T Shiina
Ying Lu
Publication date
1 January 2013
Publisher
'Public Library of Science (PLoS)'
Doi
View
on
PubMed
Abstract
Located on Chromosome 6p21, classical human leukocyte antigen genes are highly polymorphic. HLA alleles associate with a variety of phenotypes, such as narcolepsy, autoimmunity, as well as immunologic response to infectious disease. Moreover, high resolution genotyping of these loci is critical to achieving long-term survival of allogeneic transplants. Development of methods to obtain high resolution analysis of HLA genotypes will lead to improved understanding of how select alleles contribute to human health and disease risk. Genomic DNAs were obtained from a cohort of n = 383 subjects recruited as part of an Ulcerative Colitis study and analyzed for HLA-DRB1. HLA genotypes were determined using sequence specific oligonucleotide probes and by next-generation sequencing using the Roche/454 GSFLX instrument. The Clustering and Alignment of Polymorphic Sequences (CAPSeq) software application was developed to analyze next-generation sequencing data. The application generates HLA sequence specific 6-digit genotype information from next-generation sequencing data using MUMmer to align sequences and the R package diffusionMap to classify sequences into their respective allelic groups. The incorporation of Bootstrap Aggregating, Bagging to aid in sorting of sequences into allele classes resulted in improved genotyping accuracy. Using Bagging iterations equal to 60, the genotyping results obtained using CAPSeq when compared with sequence specific oligonucleotide probe characterized 4-digit genotypes exhibited high rates of concordance, matching at 759 out of 766 (99.1%) alleles. © 2013 Ringquist et al
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