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Series GSE150528 Query DataSets for GSE150528
Status Public on Sep 07, 2020
Title Genome-wide binding of SEPALLATA3 (SEP3) and AGAMOUS (AG) complexes determined by sequential DNA-affinity purification sequencing
Organism Arabidopsis thaliana
Experiment type Other
Summary In this study, we compare the DNA binding specifify and affinity of SEPALLATA3 and AGAMOUS complexes
The MADS transcription factors, SEPALLATA3 (SEP3) and AGAMOUS (AG), are required for floral organ identity and determinacy of the floral meristem in Arabidopsis. Dimerization is obligatory for their DNA binding, however SEP3 and SEP3-AG also form tetrameric complexes. The goal of this study is to understand how homo and hetero-dimerization and tetramerization of MADS TFs affect genome-wide DNA-binding patterns. Using a modified sequential DNA affinity purification sequencing protocol (seq-DAP-seq), we selectively purified SEP3 homomeric and SEP3-AG heteromeric complexes, including the dimeric SEP3 tet-AG complex and the tetrameric SEP3-AG complex, and determined their genome-wide binding.
 
Overall design We use a in vitro genome-wide DNA binding assay, termed sequential DNA affinity purification sequencing, to determine the genome-wide binding of SEP3-AG tetramer, SEP3∆tet-AG dimer, and SEP3 homocomplex.
 
Contributor(s) Lai X, Stigliani A, Lucas J, Parcy F, Zubieta C
Citation(s) 32890394
Submission date May 13, 2020
Last update date Sep 09, 2020
Contact name Jérémy LUCAS
E-mail(s) jeremy.lucas@cea.fr
Organization name CNRS
Street address 17 avenue des Martyrs
City Grenoble
ZIP/Postal code 38000
Country France
 
Platforms (1)
GPL17970 Illumina MiSeq (Arabidopsis thaliana)
Samples (10)
GSM4551721 Input DNA
GSM4551722 SEP3AG_rep1
GSM4551723 SEP3AG_rep2
Relations
BioProject PRJNA632653
SRA SRP261520

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Supplementary file Size Download File type/resource
GSE150528_RAW.tar 1.3 Gb (http)(custom) TAR (of BEDGRAPH, NARROWPEAK)
SRA Run SelectorHelp
Raw data are available in SRA
Processed data provided as supplementary file

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