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Status |
Public on Jan 01, 2021 |
Title |
Dcaf11 facilitates telomere elongation in early embryos and embryonic stem cells (ESCs) through activating the Zscan4-mediated alternative lengthening telomere (ALT) mechanism |
Organism |
Mus musculus |
Experiment type |
Genome binding/occupancy profiling by high throughput sequencing Expression profiling by high throughput sequencing
|
Summary |
This SuperSeries is composed of the SubSeries listed below.
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Overall design |
Refer to individual Series
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Citation(s) |
33357405 |
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Submission date |
Jun 14, 2019 |
Last update date |
Jul 19, 2021 |
Contact name |
Yixin Huang |
E-mail(s) |
1710944@tongji.edu.cn
|
Organization name |
Tongji University
|
Street address |
Siping Road
|
City |
Shanghai |
ZIP/Postal code |
200092 |
Country |
China |
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Platforms (2) |
GPL11002 |
Illumina Genome Analyzer IIx (Mus musculus) |
GPL24247 |
Illumina NovaSeq 6000 (Mus musculus) |
|
Samples (28)
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This SuperSeries is composed of the following SubSeries:
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GSE132745 |
Single cell RNA-seq Analysis of Wild Type(WT), Dcaf11 knockout(KO) and Dcaf11 knockdown(KD) embryos |
GSE159552 |
ULI-NChIP-seq Analysis of Wild Type(WT) and Dcaf11 overexpresion(OE) ESCs [ChIP-seq] |
GSE162232 |
Kap1 ChIP-seq Analysis of Wild Type(WT) and Dcaf11 overexpresion(OE) ESCs |
GSE180259 |
RNA-seq Analysis of Wild Type(WT) and Dcaf11 overexpression (OE) ESCs |
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Relations |
BioProject |
PRJNA548906 |