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Nutrients


Title:"In Contrast to Dietary Restriction, Application of Resveratrol in Mice Does not Alter Mouse Major Urinary Protein Expression"
Author(s):Pallauf K; Gunther I; Chin D; Rimbach G;
Address:"Institute of Human Nutrition and Food Science, University of Kiel, Hermann-Rodewald-Strasse 6, 24118 Kiel, Germany"
Journal Title:Nutrients
Year:2020
Volume:20200319
Issue:3
Page Number: -
DOI: 10.3390/nu12030815
ISSN/ISBN:2072-6643 (Electronic) 2072-6643 (Linking)
Abstract:"Resveratrol (RSV) supplementation in mice has been discussed as partly mimicking the beneficial effects of dietary restriction (DR). However, data on putative benefits from resveratrol application in mice and other model organisms including humans is contradictory. Mouse major urinary proteins (MUPs) are a family of proteins that are expressed in rodent liver and secreted via urine. Impacting (mating) behavior and pheromone communication, they are severely down-regulated upon DR. We carried out two studies in C57BL/6Rj mice where RSV was either supplemented via diet or injected intraperitoneally for 8 weeks. Contrary to -40% DR, RSV did not decrease total MUP protein expression or Mup (amongst others Mup3, Mup5, Mup6, Mup15, and Mup20) mRNA levels in mouse liver when compared to ad-libitum (AL)-fed controls. Since inhibitory glucocorticoid response elements can be found in Mup promoters, we also measured glucocorticoid receptor (GR) levels in nuclear hepatic extracts. Consistent with differential MUP expression, we observed more nuclear GR in DR mice than in RSV-supplemented and AL control mice with no difference between RSV and AL. These findings point to the notion that, in mice, RSV does not mimic DR in terms of differential MUP expression"
Keywords:"Animals *Caloric Restriction Eating *Gene Expression Gene Expression Regulation/*drug effects Male Mice Proteins/*genetics RNA, Messenger/genetics/metabolism Receptors, Glucocorticoid/genetics/metabolism Resveratrol/*pharmacology caloric restriction mimet;"
Notes:"MedlinePallauf, Kathrin Gunther, Ilka Chin, Dawn Rimbach, Gerald eng 274521263/Deutsche Forschungsgemeinschaft/ Switzerland 2020/03/25 Nutrients. 2020 Mar 19; 12(3):815. doi: 10.3390/nu12030815"

 
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