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Series GSE45532 Query DataSets for GSE45532
Status Public on Mar 28, 2013
Title Pbx and Prdm1a transcription factors differentially regulate subsets of the fast skeletal muscle program in zebrafish
Organism Danio rerio
Experiment type Expression profiling by high throughput sequencing
Summary The basic helix-loop-helix factor Myod initiates skeletal muscle differentiation by directly and sequentially activating sets of muscle differentiation genes, including those encoding muscle contractile proteins. We hypothesize that Pbx homeodomain proteins direct Myod to a subset of its transcriptional targets, in particular fast twitch muscle differentiation genes, thereby regulating the competence of muscle precursor cells to differentiate. We have previously shown that Pbx proteins bind with Myod on the promoter of the zebrafish fast muscle gene mylpfa and that Pbx proteins are required for Myod to activate mylpfa expression and the fast-twitch muscle-specific differentiation program in zebrafish embryos. Here we have investigated the interactions of Pbx with another muscle fiber-type regulator, Prdm1a, a SET-domain DNA-binding factor that directly represses mylpfa expression and fast muscle differentiation. The prdm1a mutant phenotype, early and increased fast muscle differentiation, is the opposite of the Pbx-null phenotype, delayed and reduced fast muscle differentiation. To determine whether Pbx and Prdm1a have opposing activities on a common set of genes, we used RNA-seq analysis to globally assess gene expression in zebrafish embryos with single- and double-losses-of-function for Pbx and Prdm1a. We find that the levels of expression of certain fast muscle genes are increased or approximately wild type in pbx2/4-MO;prdm1a-/- embryos, suggesting that Pbx activity normally counters the repressive action of Prdm1a for a subset of the fast muscle program. However, other fast muscle genes require Pbx but are not regulated by Prdm1a. Thus, our findings reveal that subsets of the fast muscle program are differentially regulated by Pbx and Prdm1a. Our findings provide an example of how Pbx homeodomain proteins act in a balance with other transcription factors to regulate subsets of a cellular differentiation program.
 
Overall design Total RNA samples were genotyped and pooled for 4 sample types: control-MO;prdm1+/+; control-MO;prdm1-/-; pbx2/4-MO;prdm1+/+; and pbx2/4-MO;prdm1-/- embryos at the 10 somite (s) stage from three independent sets of egg collections/injections.
 
Contributor(s) Maves L, Yao Z
Citation(s) 23789105
Submission date Mar 27, 2013
Last update date May 15, 2019
Contact name Stephen Tapscott
E-mail(s) stapscot@fredhutch.org
Organization name Fred Hutch Cancer Research Center
Department Human Biology
Lab Tapscott
Street address 1100 Fairview N. Ave
City Seattle
State/province WASHINGTON
ZIP/Postal code 98103
Country USA
 
Platforms (1)
GPL14875 Illumina HiSeq 2000 (Danio rerio)
Samples (12)
GSM1108115 control rep1
GSM1108116 control rep2
GSM1108117 control rep3
Relations
BioProject PRJNA194542
SRA SRP020090

Download family Format
SOFT formatted family file(s) SOFTHelp
MINiML formatted family file(s) MINiMLHelp
Series Matrix File(s) TXTHelp

Supplementary file Size Download File type/resource
GSE45532_double.genes.csv.gz 551.0 Kb (ftp)(http) CSV
GSE45532_gene.counts.csv.gz 871.9 Kb (ftp)(http) CSV
GSE45532_pbx.genes.csv.gz 550.5 Kb (ftp)(http) CSV
GSE45532_prdm.genes.csv.gz 545.5 Kb (ftp)(http) CSV
SRA Run SelectorHelp
Raw data are available in SRA
Processed data are available on Series record

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