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Disease model discovery from 3,328 gene knockouts by The International Mouse Phenotyping Consortium.


ABSTRACT: Although next-generation sequencing has revolutionized the ability to associate variants with human diseases, diagnostic rates and development of new therapies are still limited by a lack of knowledge of the functions and pathobiological mechanisms of most genes. To address this challenge, the International Mouse Phenotyping Consortium is creating a genome- and phenome-wide catalog of gene function by characterizing new knockout-mouse strains across diverse biological systems through a broad set of standardized phenotyping tests. All mice will be readily available to the biomedical community. Analyzing the first 3,328 genes identified models for 360 diseases, including the first models, to our knowledge, for type C Bernard-Soulier, Bardet-Biedl-5 and Gordon Holmes syndromes. 90% of our phenotype annotations were novel, providing functional evidence for 1,092 genes and candidates in genetically uncharacterized diseases including arrhythmogenic right ventricular dysplasia 3. Finally, we describe our role in variant functional validation with The 100,000 Genomes Project and others.

SUBMITTER: Meehan TF 

PROVIDER: S-EPMC5546242 | biostudies-literature | 2017 Aug

REPOSITORIES: biostudies-literature

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Disease model discovery from 3,328 gene knockouts by The International Mouse Phenotyping Consortium.

Meehan Terrence F TF   Conte Nathalie N   West David B DB   Jacobsen Julius O JO   Mason Jeremy J   Warren Jonathan J   Chen Chao-Kung CK   Tudose Ilinca I   Relac Mike M   Matthews Peter P   Karp Natasha N   Santos Luis L   Fiegel Tanja T   Ring Natalie N   Westerberg Henrik H   Greenaway Simon S   Sneddon Duncan D   Morgan Hugh H   Codner Gemma F GF   Stewart Michelle E ME   Brown James J   Horner Neil N   Haendel Melissa M   Washington Nicole N   Mungall Christopher J CJ   Reynolds Corey L CL   Gallegos Juan J   Gailus-Durner Valerie V   Sorg Tania T   Pavlovic Guillaume G   Bower Lynette R LR   Moore Mark M   Morse Iva I   Gao Xiang X   Tocchini-Valentini Glauco P GP   Obata Yuichi Y   Cho Soo Young SY   Seong Je Kyung JK   Seavitt John J   Beaudet Arthur L AL   Dickinson Mary E ME   Herault Yann Y   Wurst Wolfgang W   de Angelis Martin Hrabe MH   Lloyd K C Kent KCK   Flenniken Ann M AM   Nutter Lauryl M J LMJ   Newbigging Susan S   McKerlie Colin C   Justice Monica J MJ   Murray Stephen A SA   Svenson Karen L KL   Braun Robert E RE   White Jacqueline K JK   Bradley Allan A   Flicek Paul P   Wells Sara S   Skarnes William C WC   Adams David J DJ   Parkinson Helen H   Mallon Ann-Marie AM   Brown Steve D M SDM   Smedley Damian D  

Nature genetics 20170626 8


Although next-generation sequencing has revolutionized the ability to associate variants with human diseases, diagnostic rates and development of new therapies are still limited by a lack of knowledge of the functions and pathobiological mechanisms of most genes. To address this challenge, the International Mouse Phenotyping Consortium is creating a genome- and phenome-wide catalog of gene function by characterizing new knockout-mouse strains across diverse biological systems through a broad set  ...[more]

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