Genome-wide dose-dependent inhibition of histone deacetylases studies reveal their roles in enhancer remodeling and suppression of oncogenic super-enhancers
Journal Article
Overview
publication date
has subject area
Azoles - Thiazoles
Biochemical Phenomena - Acetylation
Biochemical Phenomena - Enhancer Elements, Genetic
Biochemical Phenomena - Histone Code
Biochemical Phenomena - Promoter Regions, Genetic
Carrier Proteins - Histones
Cell Line
Cell Line, Transformed
Cytostatic Agents
Genetic Structures - Enhancer Elements, Genetic
Genetic Structures - Histone Code
Genetic Structures - Promoter Regions, Genetic
Genome
Histone Deacetylase Inhibitors
Histone Deacetylases
Macrocyclic Compounds - Depsipeptides
Metabolism - Acetylation
Nuclear Proteins - Histones
Nucleoproteins - Histones
Oncogenes
Organic Chemicals - Thiazoles
Organic Chemistry Phenomena - Acetylation
Peptides - Depsipeptides
Pharmacological Phenomena - Dose-Response Relationship, Drug
RNA Polymerase II
RNA, Messenger
Regulatory Elements, Transcriptional - Enhancer Elements, Genetic
Regulatory Elements, Transcriptional - Promoter Regions, Genetic
Toxicological Phenomena - Dose-Response Relationship, Drug
has restriction
Date in CU Experts
December 22, 2017 12:12 PM
Full Author List
Sanchez GJ; Richmond PA; Bunker EN; Karman SS; Azofeifa J; Garnett AT; Xu Q; Wheeler GE; Toomey CM; Zhang Q
author count
citation count
published in
Other Profiles
International Standard Serial Number (ISSN)
Electronic International Standard Serial Number (EISSN)
Digital Object Identifier (DOI)
Additional Document Info
start page
end page
volume
issue