|
Status |
Public on May 21, 2017 |
Title |
PC rep 1 |
Sample type |
RNA |
|
|
Source name |
PC rep 1
|
Organism |
Mus musculus |
Characteristics |
cell type: Pericyte strain: C57BL/6
|
Extracted molecule |
total RNA |
Extraction protocol |
300 ng of total DNA-free RNA was used as input for labelled cRNA synthesis (Illumina TotalPrep RNA Amplification Kit - Ambion) following the manufacturer's instructions (IVT: 18h) The RNA samples from in vivo transplanted and FACS sorted cells were amplified using the TargetAmp 2-Round Biotin-aRNA Amplification Kit 3.0 (Epicentre
|
Label |
biotin
|
Label protocol |
Biotinylated cRNA were prepared with the Ambion MessageAmp kit for Illumina arrays.
|
|
|
Hybridization protocol |
Purified and labeled cRNA was then hybridized for 18 hrs onto MouseRef-8 v2 expression BeadChips (Illumina
|
Scan protocol |
After the recommended washing the chips were stained with streptavidin-Cy3 (GE Healthcare) and scanned using the iScan reader (Illumina) and the accompanying software.
|
Description |
replicate 1
|
Data processing |
The bead intensities were mapped to gene information using BeadStudio 3.2 (Illumina) background correction was perform using the Affymetrix Robust Multi-array Analysis (RMA) background correction model variance stabilization was performed using the log2 scaling and gene expression normalization was calculated with the quantile method implemented in the lumi package of R-Bioconductor. Data post-processing and graphics were performed with in-house developed functions in MATLAB.
|
|
|
Submission date |
May 22, 2014 |
Last update date |
Jan 15, 2022 |
Contact name |
Marcos J. Araúzo-Bravo |
E-mail(s) |
[email protected]
|
Phone |
+34 943 00 6108
|
Organization name |
Max Planck Institute for Molecular Biomedicine
|
Department |
Cell and Developmental Biology
|
Lab |
Computational Biology and Bionformatics
|
Street address |
Rogentstrasse
|
City |
Muenster |
ZIP/Postal code |
48149 |
Country |
Germany |
|
|
Platform ID |
GPL6885 |
Series (1) |
GSE57890 |
Pericyte Characteristics and an Optimal Factor Combination Enable Generating Bona-Fide iOPCs with the High Efficiency |
|