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Inferring compound heterozygosity from large-scale exome sequencing data.
Guo, Michael H; Francioli, Laurent C; Stenton, Sarah L; Goodrich, Julia K; Watts, Nicholas A; Singer-Berk, Moriel; Groopman, Emily; Darnowsky, Philip W; Solomonson, Matthew; Baxter, Samantha; Tiao, Grace; Neale, Benjamin M; Hirschhorn, Joel N; Rehm, Heidi L; Daly, Mark J; O'Donnell-Luria, Anne; Karczewski, Konrad J; MacArthur, Daniel G; Samocha, Kaitlin E.
Afiliação
  • Guo MH; Department of Neurology, Hospital of the University of the Pennsylvania, Philadelphia, PA, USA.
  • Francioli LC; Program in Medical and Population Genetics, Broad Institute of MIT and Harvard, Cambridge, MA, USA.
  • Stenton SL; Program in Medical and Population Genetics, Broad Institute of MIT and Harvard, Cambridge, MA, USA.
  • Goodrich JK; Analytic and Translational Genetics Unit, Massachusetts General Hospital, Boston, MA, USA.
  • Watts NA; Program in Medical and Population Genetics, Broad Institute of MIT and Harvard, Cambridge, MA, USA.
  • Singer-Berk M; Analytic and Translational Genetics Unit, Massachusetts General Hospital, Boston, MA, USA.
  • Groopman E; Division of Genetics and Genomics, Boston Children's Hospital, Boston, MA.
  • Darnowsky PW; Program in Medical and Population Genetics, Broad Institute of MIT and Harvard, Cambridge, MA, USA.
  • Solomonson M; Analytic and Translational Genetics Unit, Massachusetts General Hospital, Boston, MA, USA.
  • Baxter S; Program in Medical and Population Genetics, Broad Institute of MIT and Harvard, Cambridge, MA, USA.
  • Tiao G; Program in Medical and Population Genetics, Broad Institute of MIT and Harvard, Cambridge, MA, USA.
  • Neale BM; Program in Medical and Population Genetics, Broad Institute of MIT and Harvard, Cambridge, MA, USA.
  • Hirschhorn JN; Division of Genetics and Genomics, Boston Children's Hospital, Boston, MA.
  • Rehm HL; Program in Medical and Population Genetics, Broad Institute of MIT and Harvard, Cambridge, MA, USA.
  • Daly MJ; Analytic and Translational Genetics Unit, Massachusetts General Hospital, Boston, MA, USA.
  • O'Donnell-Luria A; Program in Medical and Population Genetics, Broad Institute of MIT and Harvard, Cambridge, MA, USA.
  • Karczewski KJ; Analytic and Translational Genetics Unit, Massachusetts General Hospital, Boston, MA, USA.
  • MacArthur DG; Program in Medical and Population Genetics, Broad Institute of MIT and Harvard, Cambridge, MA, USA.
bioRxiv ; 2023 Aug 21.
Article em En | MEDLINE | ID: mdl-36993580
ABSTRACT
Recessive diseases arise when both the maternal and the paternal copies of a gene are impacted by a damaging genetic variant in the affected individual. When a patient carries two different potentially causal variants in a gene for a given disorder, accurate diagnosis requires determining that these two variants occur on different copies of the chromosome (i.e., are in trans) rather than on the same copy (i.e. in cis). However, current approaches for determining phase, beyond parental testing, are limited in clinical settings. We developed a strategy for inferring phase for rare variant pairs within genes, leveraging genotypes observed in exome sequencing data from the Genome Aggregation Database (gnomAD v2, n=125,748). When applied to trio data where phase can be determined by transmission, our approach estimates phase with 95.7% accuracy and remains accurate even for very rare variants (allele frequency < 1×10-4). We also correctly phase 95.9% of variant pairs in a set of 293 patients with Mendelian conditions carrying presumed causal compound heterozygous variants. We provide a public resource of phasing estimates from gnomAD, including phasing estimates for coding variants across the genome and counts per gene of rare variants in trans, that can aid interpretation of rare co-occurring variants in the context of recessive disease.

Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2023 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2023 Tipo de documento: Article