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Publication : Reprogramming the posttranslational code of SRC-3 confers a switch in mammalian systems biology.

First Author  York B Year  2010
Journal  Proc Natl Acad Sci U S A Volume  107
Issue  24 Pages  11122-7
PubMed ID  20534466 Mgi Jnum  J:161276
Mgi Id  MGI:4457943 Doi  10.1073/pnas.1005262107
Citation  York B, et al. (2010) Reprogramming the posttranslational code of SRC-3 confers a switch in mammalian systems biology. Proc Natl Acad Sci U S A 107(24):11122-7
abstractText  Here we demonstrate that reprogramming steroid receptor coactivator-3 (SRC-3) function by changing its posttranslational modification (PTM) code drastically influences systems biology. These findings support the physiological importance of PTMs in directing in vivo functions of a master coregulator. We previously reported that the transactivation potential of SRC-3 is controlled in part by PTMs, although this data emanated from in vitro studies. To test the physiological implications of PTMs on SRC-3, we developed a knock-in mouse model containing mutations at four conserved phosphorylation sites. These mice displayed a systems biology phenotype with increased body weight and adiposity, coupled with reduced peripheral insulin sensitivity. Collectively, these phenotypes result from increased IGF1 signaling, due to elevated IGFBP3 levels. We provide convincing evidence that these mutations in SRC-3 promoted enhanced transcription of the IGFBP3 gene and globally influenced growth and metabolism. Consequently, these mice displayed increased liver tumorigenesis, which likely results from elevated IGF1 signaling.
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