학술논문

High-throughput discovery of novel developmental phenotypes.
Document Type
article
Author
Dickinson, Mary EFlenniken, Ann MJi, XiaoTeboul, LydiaWong, Michael DWhite, Jacqueline KMeehan, Terrence FWeninger, Wolfgang JWesterberg, HenrikAdissu, HibretBaker, Candice NBower, LynetteBrown, James MCaddle, L BriannaChiani, FrancescoClary, DaveCleak, JamesDaly, Mark JDenegre, James MDoe, BrendanDolan, Mary EEdie, Sarah MFuchs, HelmutGailus-Durner, ValerieGalli, AntonellaGambadoro, AlessiaGallegos, JuanGuo, ShiyingHorner, Neil RHsu, Chih-WeiJohnson, Sara JKalaga, SowmyaKeith, Lance CLanoue, LouiseLawson, Thomas NLek, MonkolMark, ManuelMarschall, SusanMason, JeremyMcElwee, Melissa LNewbigging, SusanNutter, Lauryl MJPeterson, Kevin ARamirez-Solis, RamiroRowland, Douglas JRyder, EdwardSamocha, Kaitlin ESeavitt, John RSelloum, MohammedSzoke-Kovacs, ZsomborTamura, MasaruTrainor, Amanda GTudose, IlincaWakana, ShigeharuWarren, JonathanWendling, OliviaWest, David BWong, LeeyeanYoshiki, AtsushiInternational Mouse Phenotyping ConsortiumJackson LaboratoryInfrastructure Nationale PHENOMIN, Institut Clinique de la Souris (ICS)Charles River LaboratoriesMRC HarwellToronto Centre for PhenogenomicsWellcome Trust Sanger InstituteRIKEN BioResource CenterMacArthur, Daniel GTocchini-Valentini, Glauco PGao, XiangFlicek, PaulBradley, AllanSkarnes, William CJustice, Monica JParkinson, Helen EMoore, MarkWells, SaraBraun, Robert ESvenson, Karen Lde Angelis, Martin HrabeHerault, YannMohun, TimMallon, Ann-MarieHenkelman, R MarkBrown, Steve DMAdams, David JLloyd, KC KentMcKerlie, ColinBeaudet, Arthur LBućan, MajaMurray, Stephen A
Source
Nature. 537(7621)
Subject
International Mouse Phenotyping Consortium
Jackson Laboratory
Infrastructure Nationale PHENOMIN
Institut Clinique de la Souris
Charles River Laboratories
MRC Harwell
Toronto Centre for Phenogenomics
Wellcome Trust Sanger Institute
RIKEN BioResource Center
Animals
Mice
Inbred C57BL
Mice
Knockout
Humans
Mice
Disease
Imaging
Three-Dimensional
Conserved Sequence
Sequence Homology
Phenotype
Penetrance
Mutation
Polymorphism
Single Nucleotide
Genes
Essential
Genes
Lethal
Embryo
Mammalian
Genome-Wide Association Study
High-Throughput Screening Assays
Biotechnology
Human Genome
Pediatric
Congenital Structural Anomalies
Genetics
2.1 Biological and endogenous factors
General Science & Technology
Language
Abstract
Approximately one-third of all mammalian genes are essential for life. Phenotypes resulting from knockouts of these genes in mice have provided tremendous insight into gene function and congenital disorders. As part of the International Mouse Phenotyping Consortium effort to generate and phenotypically characterize 5,000 knockout mouse lines, here we identify 410 lethal genes during the production of the first 1,751 unique gene knockouts. Using a standardized phenotyping platform that incorporates high-resolution 3D imaging, we identify phenotypes at multiple time points for previously uncharacterized genes and additional phenotypes for genes with previously reported mutant phenotypes. Unexpectedly, our analysis reveals that incomplete penetrance and variable expressivity are common even on a defined genetic background. In addition, we show that human disease genes are enriched for essential genes, thus providing a dataset that facilitates the prioritization and validation of mutations identified in clinical sequencing efforts.