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Series GSE131756 Query DataSets for GSE131756
Status Public on May 19, 2020
Title Removal of H2Aub1 by ubiquitin-specific proteases 12 and 13 is required for stable Polycomb-mediated gene repression in Arabidopsis
Organism Arabidopsis thaliana
Experiment type Expression profiling by high throughput sequencing
Genome binding/occupancy profiling by high throughput sequencing
Summary Background: Stable gene repression is essential for normal growth and development. Polycomb Repressive Complexes 1 and 2 (PRC1 & PRC2) are involved in this process by establishing monoubiquitinated histone 2A (H2Aub1) and subsequent trimethylation of lysine 27 of histone 3 (H3K27me3). Previous work proposed that H2Aub1 removal by the ubiquitin-specific proteases 12 and 13 (UBP12 & UBP13) is part of the repressive PRC1&2 system, but its functional role remains elusive.

Results: We show that UBP12 and UBP13 work together with PRC1, PRC2, and EMF1 to repress genes involved in stimulus response. We found that H2Aub1 is associated with responsiveness, and that it’s only indirectly repressive via PRC2 recruitment. Our analyses also revealed that PR2 targets that do not require PRC1 are pre-repressed. Lastly, we have found that removal of H2Aub1 by UBP12/13 prevents loss of H3K27me3, consistent with our finding that the H3K27me3 demethylase REF6 is enriched at H2Aub1 marked genes.

Conclusions: Our data allow us to propose a model in which deposition of H2Aub1 permits recruitment of PRC2 and provides a state that allows for a rapid switch between gene activation and repression. Removal of H2Aub1 by UBP12/13 is required to achieve stable repression.
 
Overall design RNAseq of single and double mutants for the UBP12/13 genes, plus wild-type control, three biological replicates of each genotype. Three ChIP-seq experiments on the double mutant and wild-type; the first including H2Aub1, H2A.Z, H3, and input. The second including H3K27me3, and H3. The third including REF6 (GFP), and input. Two biological replicates were included for each genotype * IP combination.
 
Contributor(s) Kralemann L, Liu S, Trejo-Arellano MS, Muñoz-Viana R, Köhler C, Hennig L
Citation(s) 32546254
Submission date May 24, 2019
Last update date Jun 22, 2020
Contact name Claudia Köhler
E-mail(s) Claudia.Kohler@slu.se
Organization name SLU
Department Plant Biology
Lab Köhler lab
Street address Almas Allé 5
City Uppsala
ZIP/Postal code 75007
Country Sweden
 
Platforms (2)
GPL13222 Illumina HiSeq 2000 (Arabidopsis thaliana)
GPL23157 HiSeq X Ten (Arabidopsis thaliana)
Samples (40)
GSM3815201 wt_RNA_1
GSM3815202 wt_RNA_2
GSM3815203 wt_RNA_3
Relations
BioProject PRJNA544694
SRA SRP199446

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
GSE131756_Col_R1R2_GFP_50bp_scaled.bw 14.9 Mb (ftp)(http) BW
GSE131756_Col_R1R2_H2Aub_genomecov_covscale.bw 18.0 Mb (ftp)(http) BW
GSE131756_Col_R1R2_H3_fromH2Aub_genomecov_covscale.bw 18.2 Mb (ftp)(http) BW
GSE131756_Col_R1R2_H3_fromK27_genomecov_covscale.bw 17.7 Mb (ftp)(http) BW
GSE131756_Col_R1R2_HTA9_genomecov_covscale.bw 18.3 Mb (ftp)(http) BW
GSE131756_Col_R1R2_K27_genomecov_covscale.bw 16.8 Mb (ftp)(http) BW
GSE131756_Col_R1R2_input_50bp_scaled.bw 16.7 Mb (ftp)(http) BW
GSE131756_H2Aub_up_peaks_R1R2_common_lenient.bed.gz 11.3 Kb (ftp)(http) BED
GSE131756_RAW.tar 1.4 Mb (http)(custom) TAR (of TXT)
GSE131756_UBP_R1R2_H2Aub_genomecov_covscale.bw 18.1 Mb (ftp)(http) BW
GSE131756_UBP_R1R2_H3_fromH2Aub_genomecov_covscale.bw 18.3 Mb (ftp)(http) BW
GSE131756_UBP_R1R2_H3_fromK27_genomecov_covscale.bw 17.5 Mb (ftp)(http) BW
GSE131756_UBP_R1R2_HTA9_genomecov_covscale.bw 18.1 Mb (ftp)(http) BW
GSE131756_UBP_R1R2_K27_genomecov_covscale.bw 17.1 Mb (ftp)(http) BW
GSE131756_ubp_R1R2_GFP_50bp_scaled.bw 15.8 Mb (ftp)(http) BW
GSE131756_ubp_R1R2_input_50bp_scaled.bw 16.4 Mb (ftp)(http) BW
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Raw data are available in SRA
Processed data provided as supplementary file
Processed data are available on Series record

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