Bromodomains are α-helical bundles of approximately 110 residues that recognize acetylated lysine side chains mainly on histone tails. Bromodomains are known to play an important role in cancer and inflammation, and as such, significant efforts are being made to identify small-molecule inhibitors of these epigenetic reader proteins. Here, explicit solvent molecular dynamics (MD) simulations of two bromodomains (BAZ2B and CREBBP) are used to analyze the water molecules that seem to be conserved at the bottom of the acetyl-lysine binding site in most crystal structures of bromodomains. The MD runs suggest that the occupancy of the structured water molecules is influenced by conformational transitions of the loop that connects helices Z and A....
Bromodomains are epigenetic reader domains, which have come under increasing scrutiny both from acad...
Water is the most abundant molecule in biological systems and is ubiquitous in nature. Despite this...
ABSTRACT: Bromodomains are readers of the epigenetic code that specifically bind acetyl-lysine conta...
<div><p>Bromodomains are epigenetic readers of acetylated lysines that are integral parts of histone...
Bromodomains are epigenetic readers of acetylated lysines that are integral parts of histone tails. ...
Conserved water molecules are of interest in drug design, as displacement of such waters can lead to...
Conserved water molecules are of interest in drug design, as displacement of such waters can lead to...
Bromodomains are protein modules that selectively recognize histones by binding to acetylated lysine...
AbstractBromodomains are protein modules that selectively recognize histones by binding to acetylate...
Development of ligands for bromodomains has expanded our understanding of gene regulation and epige...
Bromodomains, epigenetic readers that recognize acetylated lysine residues in histone tails, are pot...
Bromodomains are epigenetic reader domains, which have come under increasing scrutiny both from acad...
Bromodomains are four-helix bundle proteins that specifically recognize acetylation of lysine side c...
Bromodomains are epigenetic reader domains, which have come under increasing scrutiny both from acad...
Bromodomains are epigenetic reader domains, which have come under increasing scrutiny both from acad...
Bromodomains are epigenetic reader domains, which have come under increasing scrutiny both from acad...
Water is the most abundant molecule in biological systems and is ubiquitous in nature. Despite this...
ABSTRACT: Bromodomains are readers of the epigenetic code that specifically bind acetyl-lysine conta...
<div><p>Bromodomains are epigenetic readers of acetylated lysines that are integral parts of histone...
Bromodomains are epigenetic readers of acetylated lysines that are integral parts of histone tails. ...
Conserved water molecules are of interest in drug design, as displacement of such waters can lead to...
Conserved water molecules are of interest in drug design, as displacement of such waters can lead to...
Bromodomains are protein modules that selectively recognize histones by binding to acetylated lysine...
AbstractBromodomains are protein modules that selectively recognize histones by binding to acetylate...
Development of ligands for bromodomains has expanded our understanding of gene regulation and epige...
Bromodomains, epigenetic readers that recognize acetylated lysine residues in histone tails, are pot...
Bromodomains are epigenetic reader domains, which have come under increasing scrutiny both from acad...
Bromodomains are four-helix bundle proteins that specifically recognize acetylation of lysine side c...
Bromodomains are epigenetic reader domains, which have come under increasing scrutiny both from acad...
Bromodomains are epigenetic reader domains, which have come under increasing scrutiny both from acad...
Bromodomains are epigenetic reader domains, which have come under increasing scrutiny both from acad...
Water is the most abundant molecule in biological systems and is ubiquitous in nature. Despite this...
ABSTRACT: Bromodomains are readers of the epigenetic code that specifically bind acetyl-lysine conta...