H3K9-14ac

Information H3K9-14ac

Description

H3K14ac have been linked to active gene transcription in yeast and mammalian cells (Li et al., 2007) and with activation of plant genes (Pfluger and Wagner, 2007; Kim et al., 2010).

Full Name

Histone H3K9-14ac

Source NCBI

ReMap Statistics

Datasets
10
Biotypes
1
Peaks
169,387
Non-redundant peaks
38,336

TF Classification

Familly
REM
Sub Familly
NA

Source AtTFDB

External IDs

JASPAR
Ensembl
UniProt
Genevisible
RefSeq
Aliases
Histone H3K9-14ac
All peaks H3K9-14ac
Download BED file
Non redundant peaks H3K9-14ac
Download BED file
SEQUENCES H3K9-14ac
Download FASTA file
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Datasets Table for H3K9-14ac

Target name Target modification Ecotype/Strain Biotype Biotype modification Source Species Experiment Peaks
H3K9-14ac Col-0 Col-0_seedling 7d-water-6h GEO Arabidopsis thaliana GSE82075 16,452
H3K9-14ac Col-0 Col-0_seedling 7d-water-3h GEO Arabidopsis thaliana GSE82075 16,902
H3K9-14ac Col-0 Col-0_seedling 7d-TSA-6h GEO Arabidopsis thaliana GSE82075 16,196
H3K9-14ac Col-0 Col-0_seedling 7d-TSA-3h GEO Arabidopsis thaliana GSE82075 17,902
H3K9-14ac Col-0 Col-0_seedling 7d-GSNO-cPTIO-6h GEO Arabidopsis thaliana GSE82075 18,089
H3K9-14ac Col-0 Col-0_seedling 7d-GSNO-cPTIO-3h GEO Arabidopsis thaliana GSE82075 16,818
H3K9-14ac Col-0 Col-0_seedling 7d-GSNO-6h GEO Arabidopsis thaliana GSE82075 17,619
H3K9-14ac Col-0 Col-0_seedling 7d-GSNO-3h GEO Arabidopsis thaliana GSE82075 15,829
H3K9-14ac Col-0 Col-0_seedling 7d-GSH-6h GEO Arabidopsis thaliana GSE82075 17,154
H3K9-14ac Col-0 Col-0_seedling 7d-GSH-3h GEO Arabidopsis thaliana GSE82075 16,426
Target name Target modification Ecotype/Strain Biotype Biotype modification Source Species Experiment Peaks

ReMap is a database of transcriptional regulators peaks derived from curated ChIP-seq, ChIP-exo, DAP-seq experiments in Human and Thaliana.

You are using the 2020 ReMap (3rd) release.
The ReMap catalogues (2020, 2018, 2015) are under CC BY-NC 4.0 international license, while ReMapEnrich, remap-pipeline under GNU GPLv3 licence.

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AMU AMU-MESO

This work was granted access to the HPC resources of Aix-Marseille Université financed by the project Equip@Meso (ANR-10-EQPX-29-01) of the program "Investissements d’Avenir" supervised by the Agence Nationale de la Recherche.