| Literature DB >> 25605905 |
Tao Wang1, Xiaowei Zhan1, Chun-Hui Bu2, Stephen Lyon2, David Pratt2, Sara Hildebrand2, Jin Huk Choi2, Zhao Zhang2, Ming Zeng2, Kuan-wen Wang2, Emre Turer2, Zhe Chen2, Duanwu Zhang2, Tao Yue2, Ying Wang2, Hexin Shi2, Jianhui Wang2, Lei Sun2, Jeff SoRelle2, William McAlpine2, Noelle Hutchins2, Xiaoming Zhan2, Maggy Fina2, Rochelle Gobert2, Jiexia Quan2, McKensie Kreutzer2, Stephanie Arnett2, Kimberly Hawkins2, Ashley Leach2, Christopher Tate2, Chad Daniel2, Carlos Reyna2, Lauren Prince2, Sheila Davis2, Joel Purrington2, Rick Bearden2, Jennifer Weatherly2, Danielle White2, Jamie Russell2, Qihua Sun2, Miao Tang2, Xiaohong Li2, Lindsay Scott2, Eva Marie Y Moresco2, Gerald M McInerney3, Gunilla B Karlsson Hedestam3, Yang Xie1, Bruce Beutler4.
Abstract
With the wide availability of massively parallel sequencing technologies, genetic mapping has become the rate limiting step in mammalian forward genetics. Here we introduce a method for real-time identification of N-ethyl-N-nitrosourea-induced mutations that cause phenotypes in mice. All mutations are identified by whole exome G1 progenitor sequencing and their zygosity is established in G2/G3 mice before phenotypic assessment. Quantitative and qualitative traits, including lethal effects, in single or multiple combined pedigrees are then analyzed with Linkage Analyzer, a software program that detects significant linkage between individual mutations and aberrant phenotypic scores and presents processed data as Manhattan plots. As multiple alleles of genes are acquired through mutagenesis, pooled "superpedigrees" are created to analyze the effects. Our method is distinguished from conventional forward genetic methods because it permits (1) unbiased declaration of mappable phenotypes, including those that are incompletely penetrant (2), automated identification of causative mutations concurrent with phenotypic screening, without the need to outcross mutant mice to another strain and backcross them, and (3) exclusion of genes not involved in phenotypes of interest. We validated our approach and Linkage Analyzer for the identification of 47 mutations in 45 previously known genes causative for adaptive immune phenotypes; our analysis also implicated 474 genes not previously associated with immune function. The method described here permits forward genetic analysis in mice, limited only by the rates of mutant production and screening.Entities:
Keywords: N-ethyl-N-nitrosourea; forward genetics; genetic mapping; massively parallel sequencing; mutagenesis
Mesh:
Year: 2015 PMID: 25605905 PMCID: PMC4321302 DOI: 10.1073/pnas.1423216112
Source DB: PubMed Journal: Proc Natl Acad Sci U S A ISSN: 0027-8424 Impact factor: 11.205