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Sample GSM3614761 Query DataSets for GSM3614761
Status Public on May 20, 2019
Title intestine.WT.1476
Sample type SRA
 
Source name Dissociated intestinal cells
Organism Mus musculus
Characteristics strain: C57B6/129 hybrid
tissue: Intestine
genotype/variation: wildtype
Treatment protocol Both male and females were used in this study at 6-8 weeks of age and were induced by adding 2 mg/ml doxycycline to drinking water.
Growth protocol Mice used in this study were housed and bred in Specific Pathogen Free (SPF) rooms located in the AAALAC-accredited Center for Comparative Medicine vivarium at Massachusetts General Hospital. Mice were housed in ventilated cages on a standard 12:12 light cycle. All procedures involving mice adhered to the guidelines of the approved Massachusetts General Hospital Institutional Animal Care and Use Committee (IACUC) protocol no. 2006N000104.
Extracted molecule polyA RNA
Extraction protocol RNA was purified using the RNeasy plus mini kit (Qiagen) using the provided protocol. RNA-Seq libraries were constructed using the SMARTer v3 kit (Clontech) and sequenced on Illumina HiSeq2500 instrument, resulting in approximately 30 million reads per sample on average.
RNA-Seq libraries were constructed using the SMARTer v3 kit (Clontech)
 
Library strategy RNA-Seq
Library source transcriptomic
Library selection cDNA
Instrument model Illumina HiSeq 2500
 
Data processing Illumina Casava1.7 software used for basecalling.
Sequenced reads were trimmed for adaptor sequence, and masked for low-complexity or low-quality sequence, then mapped to reference genome mm9 using STAR
Transcript abundance was calculated using Htseq
Genome_build: mm9
Supplementary_files_format_and_content: count
 
Submission date Feb 20, 2019
Last update date May 21, 2019
Contact name Justin Brumbaugh
Organization name University of Colorado Boulder
Department Molecular, Cellular, and Developmental Biology
Street address 347 UCB
City Boulder
State/province CO
ZIP/Postal code 80309
Country USA
 
Platform ID GPL17021
Series (2)
GSE126826 Inducible histone K-to-M mutations are dynamic tools to probe the physiological role of site-specific histone methylation in vitro and in vivo [RNA]
GSE126829 Inducible histone K-to-M mutations are dynamic tools to probe the physiological role of site-specific histone methylation in vitro and in vivo
Relations
BioSample SAMN10976811
SRA SRX5398966

Supplementary file Size Download File type/resource
GSM3614761_intestine.WT.1476.count.txt.gz 140.0 Kb (ftp)(http) TXT
SRA Run SelectorHelp
Raw data are available in SRA
Processed data provided as supplementary file

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