Metabolomics,Unknown,Transcriptomics,Genomics,Proteomics

Dataset Information

0

Coenzyme Q10-dependent gene expression in SAMP1 mice tissues


ABSTRACT: Our present study reveals significant decelerating effects on senescence processes in middle-aged SAMP1 mice supplemented for 6 or 14 months with the reduced form (QH2, 500 mg/ kg BW/ day) of coenzyme Q10 (CoQ10). To unravel molecular mechanisms of these CoQ10 effects, a genome-wide transcript profiling in liver, heart, brain and kidney of SAMP1 mice supplemented with the reduced (QH2) or oxidized form of CoQ10 (Q10) was performed. Liver seems to be the main target tissue of CoQ10 intervention, followed by kidney, heart and brain. Stringent evaluation of the resulting data revealed that QH2 has a stronger impact on gene expression than Q10, which was primarily due to differences in the bioavailability. Indeed, we found that QH2 supplementation was more effective than Q10 to increase levels of CoQ10 in the liver of SAMP1 mice (54.92-fold and 30.36-fold, respectively). To identify functional and regulatory connections of the “top 50” (p < 0.05) up- and down-regulated QH2-sensitive transcripts in liver (fold changes ranging from 21.24 to -6.12), text mining analysis (Genomatix BiblioSphere, GFG level B3) was used. Hereby, we identified 11 QH2-sensitive genes which are regulated by PPAR-α and are primarily involved in cholesterol synthesis (e.g. HMGCS1, HMGCL, HMGCR), fat assimilation (FABP5), lipoprotein metabolism (PLTP) and inflammation (STAT-1). Thus, we provide evidence that QH2 is involved in the reduction of fat and cholesterol synthesis via modulation of the PPAR-α signalling pathway. These data may explain, at least in part, the observed effects on decelerated age-dependent degeneration processes in QH2-supplemented SAMP1 mice. Whole genome expression profiles were analysed from liver, heart, brain and kidney (each analyzed separately) of SAMP1 mice supplemented with QH2, Q10 or a control diet. From every experimental group, three mice each were sacrificed 6 or 14 months after supplementation, resulting in a total of 72 microarrays.

ORGANISM(S): Mus musculus

SUBMITTER: Constance Schmelzer 

PROVIDER: E-GEOD-15129 | biostudies-arrayexpress |

REPOSITORIES: biostudies-arrayexpress

altmetric image

Publications

Supplementation with the reduced form of Coenzyme Q10 decelerates phenotypic characteristics of senescence and induces a peroxisome proliferator-activated receptor-alpha gene expression signature in SAMP1 mice.

Schmelzer Constance C   Kubo Hiroshi H   Mori Masayuki M   Sawashita Jinko J   Kitano Mitsuaki M   Hosoe Kazunori K   Boomgaarden Inka I   Döring Frank F   Higuchi Keiichi K  

Molecular nutrition & food research 20100601 6


Our present study reveals significant decelerating effects on senescence processes in middle-aged SAMP1 mice supplemented for 6 or 14 months with the reduced form (Q(10)H(2), 500 mg/kg BW/day) of coenzyme Q(10) (CoQ(10)). To unravel molecular mechanisms of these CoQ(10) effects, a genome-wide transcript profiling in liver, heart, brain and kidney of SAMP1 mice supplemented with the reduced (Q(10)H(2)) or oxidized form of CoQ(10) (Q(10)) was performed. Liver seems to be the main target tissue of  ...[more]

Similar Datasets

2010-03-05 | GSE15129 | GEO
2013-04-05 | E-GEOD-33940 | biostudies-arrayexpress
2010-12-22 | E-GEOD-19625 | biostudies-arrayexpress
2011-06-07 | E-GEOD-27954 | biostudies-arrayexpress
2013-04-08 | E-GEOD-21351 | biostudies-arrayexpress
2013-04-05 | GSE33940 | GEO
2013-04-08 | GSE21351 | GEO
2010-12-22 | GSE19625 | GEO
2011-06-07 | GSE27954 | GEO
2013-04-05 | E-GEOD-33769 | biostudies-arrayexpress