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GAMIBHEAR: whole-genome haplotype reconstruction from Genome Architecture Mapping data.
Markowski, Julia; Kempfer, Rieke; Kukalev, Alexander; Irastorza-Azcarate, Ibai; Loof, Gesa; Kehr, Birte; Pombo, Ana; Rahmann, Sven; Schwarz, Roland F.
Afiliação
  • Markowski J; Berlin Institute for Medical Systems Biology, Max Delbrück Center for Molecular Medicine in the Helmholtz Association (MDC), 10115 Berlin, Germany.
  • Kempfer R; Humboldt-Universität zu Berlin, Department of Biology, 10099 Berlin, Germany.
  • Kukalev A; Berlin Institute for Medical Systems Biology, Max Delbrück Center for Molecular Medicine in the Helmholtz Association (MDC), 10115 Berlin, Germany.
  • Irastorza-Azcarate I; Humboldt-Universität zu Berlin, Department of Biology, 10099 Berlin, Germany.
  • Loof G; Berlin Institute for Medical Systems Biology, Max Delbrück Center for Molecular Medicine in the Helmholtz Association (MDC), 10115 Berlin, Germany.
  • Kehr B; Berlin Institute for Medical Systems Biology, Max Delbrück Center for Molecular Medicine in the Helmholtz Association (MDC), 10115 Berlin, Germany.
  • Pombo A; Berlin Institute for Medical Systems Biology, Max Delbrück Center for Molecular Medicine in the Helmholtz Association (MDC), 10115 Berlin, Germany.
  • Rahmann S; Humboldt-Universität zu Berlin, Department of Biology, 10099 Berlin, Germany.
  • Schwarz RF; Berlin Institute of Health (BIH) at Charité-Universitätsmedizin Berlin, 10177 Berlin, Germany.
Bioinformatics ; 37(19): 3128-3135, 2021 Oct 11.
Article em En | MEDLINE | ID: mdl-33830196
ABSTRACT
MOTIVATION Genome Architecture Mapping (GAM) was recently introduced as a digestion- and ligation-free method to detect chromatin conformation. Orthogonal to existing approaches based on chromatin conformation capture (3C), GAM's ability to capture both inter- and intra-chromosomal contacts from low amounts of input data makes it particularly well suited for allele-specific analyses in a clinical setting. Allele-specific analyses are powerful tools to investigate the effects of genetic variants on many cellular phenotypes including chromatin conformation, but require the haplotypes of the individuals under study to be known a priori. So far, however, no algorithm exists for haplotype reconstruction and phasing of genetic variants from GAM data, hindering the allele-specific analysis of chromatin contact points in non-model organisms or individuals with unknown haplotypes.

RESULTS:

We present GAMIBHEAR, a tool for accurate haplotype reconstruction from GAM data. GAMIBHEAR aggregates allelic co-observation frequencies from GAM data and employs a GAM-specific probabilistic model of haplotype capture to optimize phasing accuracy. Using a hybrid mouse embryonic stem cell line with known haplotype structure as a benchmark dataset, we assess correctness and completeness of the reconstructed haplotypes, and demonstrate the power of GAMIBHEAR to infer accurate genome-wide haplotypes from GAM data. AVAILABILITY AND IMPLEMENTATION GAMIBHEAR is available as an R package under the open-source GPL-2 license at https//bitbucket.org/schwarzlab/gamibhear. SUPPLEMENTARY INFORMATION Supplementary data are available at Bioinformatics online.

Texto completo: 1 Base de dados: MEDLINE Idioma: En Revista: Bioinformatics Assunto da revista: INFORMATICA MEDICA Ano de publicação: 2021 Tipo de documento: Article País de afiliação: Alemanha

Texto completo: 1 Base de dados: MEDLINE Idioma: En Revista: Bioinformatics Assunto da revista: INFORMATICA MEDICA Ano de publicação: 2021 Tipo de documento: Article País de afiliação: Alemanha