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High-throughput discovery of novel developmental phenotypes.


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.

SUBMITTER: Dickinson ME 

PROVIDER: S-EPMC5295821 | biostudies-literature | 2016 Sep

REPOSITORIES: biostudies-literature

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High-throughput discovery of novel developmental phenotypes.

Dickinson Mary E ME   Flenniken Ann M AM   Ji Xiao X   Teboul Lydia L   Wong Michael D MD   White Jacqueline K JK   Meehan Terrence F TF   Weninger Wolfgang J WJ   Westerberg Henrik H   Adissu Hibret H   Baker Candice N CN   Bower Lynette L   Brown James M JM   Caddle L Brianna LB   Chiani Francesco F   Clary Dave D   Cleak James J   Daly Mark J MJ   Denegre James M JM   Doe Brendan B   Dolan Mary E ME   Edie Sarah M SM   Fuchs Helmut H   Gailus-Durner Valerie V   Galli Antonella A   Gambadoro Alessia A   Gallegos Juan J   Guo Shiying S   Horner Neil R NR   Hsu Chih-Wei CW   Johnson Sara J SJ   Kalaga Sowmya S   Keith Lance C LC   Lanoue Louise L   Lawson Thomas N TN   Lek Monkol M   Mark Manuel M   Marschall Susan S   Mason Jeremy J   McElwee Melissa L ML   Newbigging Susan S   Nutter Lauryl M J LM   Peterson Kevin A KA   Ramirez-Solis Ramiro R   Rowland Douglas J DJ   Ryder Edward E   Samocha Kaitlin E KE   Seavitt John R JR   Selloum Mohammed M   Szoke-Kovacs Zsombor Z   Tamura Masaru M   Trainor Amanda G AG   Tudose Ilinca I   Wakana Shigeharu S   Warren Jonathan J   Wendling Olivia O   West David B DB   Wong Leeyean L   Yoshiki Atsushi A   MacArthur Daniel G DG   Tocchini-Valentini Glauco P GP   Gao Xiang X   Flicek Paul P   Bradley Allan A   Skarnes William C WC   Justice Monica J MJ   Parkinson Helen E HE   Moore Mark M   Wells Sara S   Braun Robert E RE   Svenson Karen L KL   de Angelis Martin Hrabe MH   Herault Yann Y   Mohun Tim T   Mallon Ann-Marie AM   Henkelman R Mark RM   Brown Steve D M SD   Adams David J DJ   Lloyd K C Kent KC   McKerlie Colin C   Beaudet Arthur L AL   Bućan Maja M   Murray Stephen A SA  

Nature 20160914 7621


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 incorporat  ...[more]

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