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Series GSE100569 Query DataSets for GSE100569
Status Public on Aug 25, 2017
Title A Mechanism of Cohesin-Dependent Loop Extrusion Organizes Zygotic Genome Architecture
Organism Mus musculus
Experiment type Other
Summary Fertilization triggers assembly of higher-order chromatin structure from a nucleosomal state to generate a totipotent embryo. Chromatin loops and domains are detected in mouse zygotes by single-nucleus Hi-C (snHi-C) but not bulk Hi-C; both are absent in Drosophila embryos. We investigated whether zygotic chromatin structures are generated by cohesin-dependent loop extrusion. Using snHi-C of mouse knockout embryos, we demonstrate the zygotic genome folds into loops and domains that critically depend on Scc1-cohesin and are regulated in size by Wapl. Remarkably, we discovered distinct effects on maternal and paternal chromatin loop sizes, likely reflecting loop extrusion dynamics and reprogramming states. Polymer simulations based on snHi-C are consistent with a model where cohesin locally compacts chromatin and restricts inter-chromosomal interactions by active loop extrusion, whose processivity is controlled by Wapl. Our simulations and experimental data provide evidence that cohesin-dependent loop extrusion organizes mammalian genomes over multiple scales from the one-cell embryo onwards.
 
Overall design We generated 144 Hi-C libraries from pronuclei of zygotes of Scc1 and Wapl knockout mice and wild-type G2 zygotes (31 Scc1flox, 45 Scc1D(m)/+(p), 18 Waplflox, 18 WaplD(m)/+(p), 32 G2).
 
Contributor(s) Gassler J, Brandão HB, Imakaev M, Flyamer IM, Ladstätter S, Bickmore WA, Peters J, Mirny LA, Tachibana-Konwalski K
Citation(s) 29217590
Submission date Jun 27, 2017
Last update date Jul 25, 2021
Contact name Johanna Gassler
Organization name IMBA - Institute for Molecular Biotechnology
Lab Tachibana-Konwalski
Street address Dr. Bohr-Gasse 3
City Vienna
ZIP/Postal code 1030
Country Austria
 
Platforms (2)
GPL17021 Illumina HiSeq 2500 (Mus musculus)
GPL21626 NextSeq 550 (Mus musculus)
Samples (144)
GSM2687248 1_Scc1_KO
GSM2687249 2_Scc1_KO
GSM2687250 3_Scc1_KO
Relations
BioProject PRJNA392125
SRA SRP110616

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Supplementary file Size Download File type/resource
GSE100569_RAW.tar 2.2 Gb (http)(custom) TAR (of COOL)
SRA Run SelectorHelp
Raw data are available in SRA
Processed data provided as supplementary file

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