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High-Throughput Screening of Mouse Gene Knockouts Identifies Established and Novel High Body Fat Phenotypes.
Powell, David R; Revelli, Jean-Pierre; Doree, Deon D; DaCosta, Christopher M; Desai, Urvi; Shadoan, Melanie K; Rodriguez, Lawrence; Mullens, Michael; Yang, Qi M; Ding, Zhi-Ming; Kirkpatrick, Laura L; Vogel, Peter; Zambrowicz, Brian; Sands, Arthur T; Platt, Kenneth A; Hansen, Gwenn M; Brommage, Robert.
Afiliação
  • Powell DR; Department of Pharmaceutical Biology, Lexicon Pharmaceuticals, Inc, The Woodlands, TX, USA.
  • Revelli JP; Department of Pharmaceutical Biology, Lexicon Pharmaceuticals, Inc, The Woodlands, TX, USA.
  • Doree DD; Department of Pharmaceutical Biology, Lexicon Pharmaceuticals, Inc, The Woodlands, TX, USA.
  • DaCosta CM; Department of Pharmaceutical Biology, Lexicon Pharmaceuticals, Inc, The Woodlands, TX, USA.
  • Desai U; Department of Pharmaceutical Biology, Lexicon Pharmaceuticals, Inc, The Woodlands, TX, USA.
  • Shadoan MK; Department of Pharmaceutical Biology, Lexicon Pharmaceuticals, Inc, The Woodlands, TX, USA.
  • Rodriguez L; Department of Information Technology, Lexicon Pharmaceuticals, Inc, The Woodlands, Tx, USA.
  • Mullens M; Department of Information Technology, Lexicon Pharmaceuticals, Inc, The Woodlands, Tx, USA.
  • Yang QM; Department of Pharmaceutical Biology, Lexicon Pharmaceuticals, Inc, The Woodlands, TX, USA.
  • Ding ZM; Department of Pharmaceutical Biology, Lexicon Pharmaceuticals, Inc, The Woodlands, TX, USA.
  • Kirkpatrick LL; Department of Molecular Biology, Lexicon Pharmaceuticals, Inc, The Woodlands, Tx, USA.
  • Vogel P; Department of Pharmaceutical Biology, Lexicon Pharmaceuticals, Inc, The Woodlands, TX, USA.
  • Zambrowicz B; Department of Pharmaceutical Biology, Lexicon Pharmaceuticals, Inc, The Woodlands, TX, USA.
  • Sands AT; Department of Information Technology, Lexicon Pharmaceuticals, Inc, The Woodlands, Tx, USA.
  • Platt KA; Department of Molecular Biology, Lexicon Pharmaceuticals, Inc, The Woodlands, Tx, USA.
  • Hansen GM; Department of Pharmaceutical Biology, Lexicon Pharmaceuticals, Inc, The Woodlands, TX, USA.
  • Brommage R; Department of Information Technology, Lexicon Pharmaceuticals, Inc, The Woodlands, Tx, USA.
Diabetes Metab Syndr Obes ; 14: 3753-3785, 2021.
Article em En | MEDLINE | ID: mdl-34483672
ABSTRACT

PURPOSE:

Obesity is a major public health problem. Understanding which genes contribute to obesity may better predict individual risk and allow development of new therapies. Because obesity of a mouse gene knockout (KO) line predicts an association of the orthologous human gene with obesity, we reviewed data from the Lexicon Genome5000TM high throughput phenotypic screen (HTS) of mouse gene KOs to identify KO lines with high body fat. MATERIALS AND

METHODS:

KO lines were generated using homologous recombination or gene trapping technologies. HTS body composition analyses were performed on adult wild-type and homozygous KO littermate mice from 3758 druggable mouse genes having a human ortholog. Body composition was measured by either DXA or QMR on chow-fed cohorts from all 3758 KO lines and was measured by QMR on independent high fat diet-fed cohorts from 2488 of these KO lines. Where possible, comparisons were made to HTS data from the International Mouse Phenotyping Consortium (IMPC).

RESULTS:

Body fat data are presented for 75 KO lines. Of 46 KO lines where independent external published and/or IMPC KO lines are reported as obese, 43 had increased body fat. For the remaining 29 novel high body fat KO lines, Ksr2 and G2e3 are supported by data from additional independent KO cohorts, 6 (Asnsd1, Srpk2, Dpp8, Cxxc4, Tenm3 and Kiss1) are supported by data from additional internal cohorts, and the remaining 21 including Tle4, Ak5, Ntm, Tusc3, Ankk1, Mfap3l, Prok2 and Prokr2 were studied with HTS cohorts only.

CONCLUSION:

These data support the finding of high body fat in 43 independent external published and/or IMPC KO lines. A novel obese phenotype was identified in 29 additional KO lines, with 27 still lacking the external confirmation now provided for Ksr2 and G2e3 KO mice. Undoubtedly, many mammalian obesity genes remain to be identified and characterized.
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Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Tipo de estudo: Diagnostic_studies / Prognostic_studies / Screening_studies Idioma: En Revista: Diabetes Metab Syndr Obes Ano de publicação: 2021 Tipo de documento: Article País de afiliação: Estados Unidos

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Tipo de estudo: Diagnostic_studies / Prognostic_studies / Screening_studies Idioma: En Revista: Diabetes Metab Syndr Obes Ano de publicação: 2021 Tipo de documento: Article País de afiliação: Estados Unidos