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Status |
Public on Nov 29, 2018 |
Title |
Dppa2 and Dppa4 directly regulate the Dux driven zygotic transcriptional program [siRNA] |
Organism |
Mus musculus |
Experiment type |
Expression profiling by high throughput sequencing
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Summary |
The molecular regulation of zygotic genome activation (ZGA) in mammals remains poorly understood. Primed mouse embryonic stem cells contain a rare subset of “2C-like” cells that are epigenetically and transcriptionally similar to the two cell embryo and thus represent an ideal system for studying ZGA transcription regulation. Recently, the transcription factor Dux, expressed exclusively in the minor wave of ZGA, was described to activate many downstream ZGA transcripts. However, it remains unknown what upstream maternal factors initiate ZGA either in a Dux dependent or independent manner. Here we performed a candidate-based overexpression screen, identifying, amongst others, Developmental Pluripotency Associated 2 (Dppa2) and 4 (Dppa4) as positive regulators of 2C-like cells and ZGA transcription. In the germ line, promoter DNA demethylation coincides with upregulation of Dppa2 and Dppa4 which remain expressed until E7.5 when their promoters are remethylated. Furthermore, Dppa2 and Dppa4 are also expressed during iPSC reprogramming at the time 2C-like ZGA transcription transiently peaks. Through a combination of overexpression, knockdown, knockout and rescue experiments, together with transcriptional analyses, we show that Dppa2 and Dppa4 directly regulate the 2C-like cell population and associated transcripts, including Dux and the Zscan4 cluster. Importantly, we tease apart the molecular hierarchy in which the 2C-like transcriptional program is initiated and stabilised. Dppa2 and Dppa4 require Dux to initiate 2C-like ZGA transcription, suggesting they act upstream by directly regulating Dux. Supporting this, ChIP-seq analysis revealed Dppa2 and Dppa4 bind to the Dux promoter and gene body and drive its expression. Zscan4c is also able to induce 2C-like cells in wild type cells, but, in contrast to Dux, can no longer do so in Dppa2/4 double knockout cells, suggesting it may act to stabilise rather than drive the transcriptional network. Our findings suggest a model in which Dppa2/4 binding to the Dux promoter leads to Dux upregulation and activation of the 2C-like transcriptional program which is subsequently reinforced by Zscan4c.
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Overall design |
RNA-sequencing of ESCs treated with control, Dppa2 or Dppa4 siRNAs for 4 days.
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Contributor(s) |
Eckersley-Maslin MA, Alda-Catalinas C, Blotenburg M, Kreibich E, Krueger C, Reik W |
Citation(s) |
30692203 |
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Submission date |
Oct 08, 2018 |
Last update date |
Mar 21, 2019 |
Contact name |
Felix Krueger |
E-mail(s) |
fkrueger@altoslabs.com
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Organization name |
Altos Labs
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Department |
Bioinformatics
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Street address |
Granta Park
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City |
Cambridge |
ZIP/Postal code |
CB21 6GP |
Country |
United Kingdom |
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Platforms (1) |
GPL17021 |
Illumina HiSeq 2500 (Mus musculus) |
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Samples (9)
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This SubSeries is part of SuperSeries: |
GSE120953 |
Dppa2 and Dppa4 directly regulate the Dux driven zygotic transcriptional program |
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Relations |
BioProject |
PRJNA495359 |
SRA |
SRP164733 |
Supplementary file |
Size |
Download |
File type/resource |
GSE120951_Quantified_RNAseq_report_siRNA.txt.gz |
1.5 Mb |
(ftp)(http) |
TXT |
SRA Run Selector |
Raw data are available in SRA |
Processed data are available on Series record |
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