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High-throughput screening of mouse gene knockouts identifies established and novel skeletal phenotypes

Screening gene function in vivo is a powerful approach to discover novel drug targets. We present high-throughput screening (HTS) data for 3 762 distinct global gene knockout (KO) mouse lines with viable adult homozygous mice generated using either gene-trap or homologous recombination technologies....

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Autores principales: Brommage, Robert, Liu, Jeff, Hansen, Gwenn M, Kirkpatrick, Laura L, Potter, David G, Sands, Arthur T, Zambrowicz, Brian, Powell, David R, Vogel, Peter
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4472125/
https://www.ncbi.nlm.nih.gov/pubmed/26273529
http://dx.doi.org/10.1038/boneres.2014.34
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author Brommage, Robert
Liu, Jeff
Hansen, Gwenn M
Kirkpatrick, Laura L
Potter, David G
Sands, Arthur T
Zambrowicz, Brian
Powell, David R
Vogel, Peter
author_facet Brommage, Robert
Liu, Jeff
Hansen, Gwenn M
Kirkpatrick, Laura L
Potter, David G
Sands, Arthur T
Zambrowicz, Brian
Powell, David R
Vogel, Peter
author_sort Brommage, Robert
collection PubMed
description Screening gene function in vivo is a powerful approach to discover novel drug targets. We present high-throughput screening (HTS) data for 3 762 distinct global gene knockout (KO) mouse lines with viable adult homozygous mice generated using either gene-trap or homologous recombination technologies. Bone mass was determined from DEXA scans of male and female mice at 14 weeks of age and by microCT analyses of bones from male mice at 16 weeks of age. Wild-type (WT) cagemates/littermates were examined for each gene KO. Lethality was observed in an additional 850 KO lines. Since primary HTS are susceptible to false positive findings, additional cohorts of mice from KO lines with intriguing HTS bone data were examined. Aging, ovariectomy, histomorphometry and bone strength studies were performed and possible non-skeletal phenotypes were explored. Together, these screens identified multiple genes affecting bone mass: 23 previously reported genes (Calcr, Cebpb, Crtap, Dcstamp, Dkk1, Duoxa2, Enpp1, Fgf23, Kiss1/Kiss1r, Kl (Klotho), Lrp5, Mstn, Neo1, Npr2, Ostm1, Postn, Sfrp4, Slc30a5, Slc39a13, Sost, Sumf1, Src, Wnt10b), five novel genes extensively characterized (Cldn18, Fam20c, Lrrk1, Sgpl1, Wnt16), five novel genes with preliminary characterization (Agpat2, Rassf5, Slc10a7, Slc26a7, Slc30a10) and three novel undisclosed genes coding for potential osteoporosis drug targets.
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spelling pubmed-44721252015-08-13 High-throughput screening of mouse gene knockouts identifies established and novel skeletal phenotypes Brommage, Robert Liu, Jeff Hansen, Gwenn M Kirkpatrick, Laura L Potter, David G Sands, Arthur T Zambrowicz, Brian Powell, David R Vogel, Peter Bone Res Article Screening gene function in vivo is a powerful approach to discover novel drug targets. We present high-throughput screening (HTS) data for 3 762 distinct global gene knockout (KO) mouse lines with viable adult homozygous mice generated using either gene-trap or homologous recombination technologies. Bone mass was determined from DEXA scans of male and female mice at 14 weeks of age and by microCT analyses of bones from male mice at 16 weeks of age. Wild-type (WT) cagemates/littermates were examined for each gene KO. Lethality was observed in an additional 850 KO lines. Since primary HTS are susceptible to false positive findings, additional cohorts of mice from KO lines with intriguing HTS bone data were examined. Aging, ovariectomy, histomorphometry and bone strength studies were performed and possible non-skeletal phenotypes were explored. Together, these screens identified multiple genes affecting bone mass: 23 previously reported genes (Calcr, Cebpb, Crtap, Dcstamp, Dkk1, Duoxa2, Enpp1, Fgf23, Kiss1/Kiss1r, Kl (Klotho), Lrp5, Mstn, Neo1, Npr2, Ostm1, Postn, Sfrp4, Slc30a5, Slc39a13, Sost, Sumf1, Src, Wnt10b), five novel genes extensively characterized (Cldn18, Fam20c, Lrrk1, Sgpl1, Wnt16), five novel genes with preliminary characterization (Agpat2, Rassf5, Slc10a7, Slc26a7, Slc30a10) and three novel undisclosed genes coding for potential osteoporosis drug targets. Nature Publishing Group 2014-10-28 /pmc/articles/PMC4472125/ /pubmed/26273529 http://dx.doi.org/10.1038/boneres.2014.34 Text en Copyright © 2014 Sichuan University http://creativecommons.org/licenses/by-nc-nd/3.0/ This work is licensed under a Creative Commons Attribution NonCommercial-NoDerivs 3.0 Unported License. The images or other third party material in this article are included in the article's Creative Commons license, unless indicated otherwise in the credit line; if the material is not included under the Creative Commons license, users will need to obtain permission from the license holder to reproduce the material. To view a copy of this license, visit http://creativecommons.org/licenses/by-nc-nd/3.0/
spellingShingle Article
Brommage, Robert
Liu, Jeff
Hansen, Gwenn M
Kirkpatrick, Laura L
Potter, David G
Sands, Arthur T
Zambrowicz, Brian
Powell, David R
Vogel, Peter
High-throughput screening of mouse gene knockouts identifies established and novel skeletal phenotypes
title High-throughput screening of mouse gene knockouts identifies established and novel skeletal phenotypes
title_full High-throughput screening of mouse gene knockouts identifies established and novel skeletal phenotypes
title_fullStr High-throughput screening of mouse gene knockouts identifies established and novel skeletal phenotypes
title_full_unstemmed High-throughput screening of mouse gene knockouts identifies established and novel skeletal phenotypes
title_short High-throughput screening of mouse gene knockouts identifies established and novel skeletal phenotypes
title_sort high-throughput screening of mouse gene knockouts identifies established and novel skeletal phenotypes
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4472125/
https://www.ncbi.nlm.nih.gov/pubmed/26273529
http://dx.doi.org/10.1038/boneres.2014.34
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