Homozygosity mapping on homozygosity haplotype analysis to detect recessive disease-causing genes from a small number of unrelated, outbred patients.

Genes involved in disease that are not common are often difficult to identify; a method that pinpoints them from a small number of unrelated patients will be of great help. In order to establish such a method that detects recessive genes identical-by-descent, we modified homozygosity mapping (HM) so...

Full description

Bibliographic Details
Main Authors: Koichi Hagiwara, Hiroyuki Morino, Jun Shiihara, Tomoaki Tanaka, Hitoshi Miyazawa, Tomoko Suzuki, Masakazu Kohda, Yasushi Okazaki, Kuniaki Seyama, Hideshi Kawakami
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2011-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC3176806?pdf=render
id doaj-30721c9c133d480b9ba089b1f354d12f
record_format Article
spelling doaj-30721c9c133d480b9ba089b1f354d12f2020-11-25T00:52:36ZengPublic Library of Science (PLoS)PLoS ONE1932-62032011-01-0169e2505910.1371/journal.pone.0025059Homozygosity mapping on homozygosity haplotype analysis to detect recessive disease-causing genes from a small number of unrelated, outbred patients.Koichi HagiwaraHiroyuki MorinoJun ShiiharaTomoaki TanakaHitoshi MiyazawaTomoko SuzukiMasakazu KohdaYasushi OkazakiKuniaki SeyamaHideshi KawakamiGenes involved in disease that are not common are often difficult to identify; a method that pinpoints them from a small number of unrelated patients will be of great help. In order to establish such a method that detects recessive genes identical-by-descent, we modified homozygosity mapping (HM) so that it is constructed on the basis of homozygosity haplotype (HM on HH) analysis. An analysis using 6 unrelated patients with Siiyama-type α1-antitrypsin deficiency, a disease caused by a founder gene, the correct gene locus was pinpointed from data of any 2 patients (length: 1.2-21.8 centimorgans, median: 1.6 centimorgans). For a test population in which these 6 patients and 54 healthy subjects were scrambled, the approach accurately identified these 6 patients and pinpointed the locus to a 1.4-centimorgan fragment. Analyses using synthetic data revealed that the analysis works well for IBD fragment derived from a most recent common ancestor (MRCA) who existed less than 60 generations ago. The analysis is unsuitable for the genes with a frequency in general population more than 0.1. Thus, HM on HH analysis is a powerful technique, applicable to a small number of patients not known to be related, and will accelerate the identification of disease-causing genes for recessive conditions.http://europepmc.org/articles/PMC3176806?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Koichi Hagiwara
Hiroyuki Morino
Jun Shiihara
Tomoaki Tanaka
Hitoshi Miyazawa
Tomoko Suzuki
Masakazu Kohda
Yasushi Okazaki
Kuniaki Seyama
Hideshi Kawakami
spellingShingle Koichi Hagiwara
Hiroyuki Morino
Jun Shiihara
Tomoaki Tanaka
Hitoshi Miyazawa
Tomoko Suzuki
Masakazu Kohda
Yasushi Okazaki
Kuniaki Seyama
Hideshi Kawakami
Homozygosity mapping on homozygosity haplotype analysis to detect recessive disease-causing genes from a small number of unrelated, outbred patients.
PLoS ONE
author_facet Koichi Hagiwara
Hiroyuki Morino
Jun Shiihara
Tomoaki Tanaka
Hitoshi Miyazawa
Tomoko Suzuki
Masakazu Kohda
Yasushi Okazaki
Kuniaki Seyama
Hideshi Kawakami
author_sort Koichi Hagiwara
title Homozygosity mapping on homozygosity haplotype analysis to detect recessive disease-causing genes from a small number of unrelated, outbred patients.
title_short Homozygosity mapping on homozygosity haplotype analysis to detect recessive disease-causing genes from a small number of unrelated, outbred patients.
title_full Homozygosity mapping on homozygosity haplotype analysis to detect recessive disease-causing genes from a small number of unrelated, outbred patients.
title_fullStr Homozygosity mapping on homozygosity haplotype analysis to detect recessive disease-causing genes from a small number of unrelated, outbred patients.
title_full_unstemmed Homozygosity mapping on homozygosity haplotype analysis to detect recessive disease-causing genes from a small number of unrelated, outbred patients.
title_sort homozygosity mapping on homozygosity haplotype analysis to detect recessive disease-causing genes from a small number of unrelated, outbred patients.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2011-01-01
description Genes involved in disease that are not common are often difficult to identify; a method that pinpoints them from a small number of unrelated patients will be of great help. In order to establish such a method that detects recessive genes identical-by-descent, we modified homozygosity mapping (HM) so that it is constructed on the basis of homozygosity haplotype (HM on HH) analysis. An analysis using 6 unrelated patients with Siiyama-type α1-antitrypsin deficiency, a disease caused by a founder gene, the correct gene locus was pinpointed from data of any 2 patients (length: 1.2-21.8 centimorgans, median: 1.6 centimorgans). For a test population in which these 6 patients and 54 healthy subjects were scrambled, the approach accurately identified these 6 patients and pinpointed the locus to a 1.4-centimorgan fragment. Analyses using synthetic data revealed that the analysis works well for IBD fragment derived from a most recent common ancestor (MRCA) who existed less than 60 generations ago. The analysis is unsuitable for the genes with a frequency in general population more than 0.1. Thus, HM on HH analysis is a powerful technique, applicable to a small number of patients not known to be related, and will accelerate the identification of disease-causing genes for recessive conditions.
url http://europepmc.org/articles/PMC3176806?pdf=render
work_keys_str_mv AT koichihagiwara homozygositymappingonhomozygosityhaplotypeanalysistodetectrecessivediseasecausinggenesfromasmallnumberofunrelatedoutbredpatients
AT hiroyukimorino homozygositymappingonhomozygosityhaplotypeanalysistodetectrecessivediseasecausinggenesfromasmallnumberofunrelatedoutbredpatients
AT junshiihara homozygositymappingonhomozygosityhaplotypeanalysistodetectrecessivediseasecausinggenesfromasmallnumberofunrelatedoutbredpatients
AT tomoakitanaka homozygositymappingonhomozygosityhaplotypeanalysistodetectrecessivediseasecausinggenesfromasmallnumberofunrelatedoutbredpatients
AT hitoshimiyazawa homozygositymappingonhomozygosityhaplotypeanalysistodetectrecessivediseasecausinggenesfromasmallnumberofunrelatedoutbredpatients
AT tomokosuzuki homozygositymappingonhomozygosityhaplotypeanalysistodetectrecessivediseasecausinggenesfromasmallnumberofunrelatedoutbredpatients
AT masakazukohda homozygositymappingonhomozygosityhaplotypeanalysistodetectrecessivediseasecausinggenesfromasmallnumberofunrelatedoutbredpatients
AT yasushiokazaki homozygositymappingonhomozygosityhaplotypeanalysistodetectrecessivediseasecausinggenesfromasmallnumberofunrelatedoutbredpatients
AT kuniakiseyama homozygositymappingonhomozygosityhaplotypeanalysistodetectrecessivediseasecausinggenesfromasmallnumberofunrelatedoutbredpatients
AT hideshikawakami homozygositymappingonhomozygosityhaplotypeanalysistodetectrecessivediseasecausinggenesfromasmallnumberofunrelatedoutbredpatients
_version_ 1725241339368439808