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E-GEOD-41629 GSE41629, SRP016497 ChIP-seq Homo sapiens

Integrated analysis of transcript level regulation of metabolism during human adipocyte differentiation [ChIP-Seq]

·Released Nov. 19, 2013 ·Updated Nov. 27, 2013
6
Samples
6
Assays
1
References
Description

Here, we have focused on studying the link between metabolic changes driven by the differentiation into mature adipocytes of a human preadipocyte cell line (SGBS) and their regulation, through a combined experimental and computational approach. By collecting data on gene expression, PPARg, CEBPa, LXR and H3K4me3 genome-wide ChIP-seq profles and transcriptome-wide microRNA target identification for miR-27a, miR29a and miR-222, and using constraint-based modeling to estimate metabolic reaction activity, we obtained a comprehensive set of information highlighting how epigenetic, transcriptional and post-transcriptional regulation impacts the metabolic network. Illumina Solexa sequencing: Six samples in total. Two ChIP-seq samples were prepared using an antibody against H3K4me3 active TSS chromatin marker from human SGBS preadipocyte and day 10 differentiated SGBS adipocyte cells. From day 10 differentiated SGBS cells additional three samples were prepared using an antibody against PPARg, CEBPa and LXRa to determine their genome-wide binding. One input control sample is included.

Sample Attributes
cell type
adipocyte, preadipocyte
chip antibody
CEBPa (sc-61, Santa Cruz Biotechnologies), H3K4me3 (17-614, Millipore), LXR (antibody from Dr. Eckardt Treuter, Karolinska Institute), none, PPARg (mixture of 0.5 ul per IP of sc-7196x, Santa Cruz Biotechnologies, and 5 ul per IP of 101700, Cayman)
organism
Homo sapiens
Experiment Info
Accession
E-GEOD-41629
GEO ID
GSE41629, SRP016497
Type
ChIP-seq
Organism
Homo sapiens
Released
Nov. 19, 2013
Updated
Nov. 27, 2013
Submitter
Merja Heinäniemi、 Merja Heinäniemi、 Thomas Sauter、 Mafalda Galhardo、 Lasse Sinkkonen
Analysis Services
Analysis Services

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