Histone tails, the intrinsically disordered terminal regions of histone proteins, are key modulators of the structure and dynamics of chromatin and, consequently, are central to many DNA template-directed processes including replication, repair, and transcription. Acetylation of histone tails is a major post-translational modification (PTM) involved in regulating chromatin, yet it remains unclear how acetylation modifies the disordered state of histone tails and affects their function. We investigated the consequences of increasing acetylation on the isolated H4 histone tail by characterizing the conformational ensembles of unacetylated, mono-, di-, tri-, and tetra-acetylated H4 histone tails using Replica Exchange Molecular Dynamics (REMD)...
Regulation of histone acetylation is fundamental to the utilization of eukaryotic genomes in chromat...
How post-translational histone modifications regulate DNA utilization constitutes one of the central...
Regulation of histone acetylation is fundamental to the utilization of eukaryotic genomes in chromat...
The H4 histone tail plays a critical role in chromatin folding and regulation—it mediates strong int...
<div><p>Acetylation of lysine residues in histone tails is associated with gene transcription. Becau...
Histone tails in nucleosomes play critical roles in regulation of many biological processes, includi...
Histone tails in nucleosomes play critical roles in regulation of many biological processes, includi...
International audienceHistone H4 lysine 16 acetylation : from genome regulation to tumoral progressi...
International audienceHistone H4 lysine 16 acetylation : from genome regulation to tumoral progressi...
Histone modifications play crucial roles in genome regulation with lysine acetylation being implicat...
Histone modifications play crucial roles in genome regulation with lysine acetylation being implicat...
Histone N (C)-terminal tails play an important role in chromatin remodeling and gene regulation. Pos...
Regulation of histone acetylation is fundamental to the utilization of eukaryotic genomes in chromat...
Regulation of histone acetylation is fundamental to the utilization of eukaryotic genomes in chromat...
Regulation of histone acetylation is fundamental to the utilization of eukaryotic genomes in chromat...
Regulation of histone acetylation is fundamental to the utilization of eukaryotic genomes in chromat...
How post-translational histone modifications regulate DNA utilization constitutes one of the central...
Regulation of histone acetylation is fundamental to the utilization of eukaryotic genomes in chromat...
The H4 histone tail plays a critical role in chromatin folding and regulation—it mediates strong int...
<div><p>Acetylation of lysine residues in histone tails is associated with gene transcription. Becau...
Histone tails in nucleosomes play critical roles in regulation of many biological processes, includi...
Histone tails in nucleosomes play critical roles in regulation of many biological processes, includi...
International audienceHistone H4 lysine 16 acetylation : from genome regulation to tumoral progressi...
International audienceHistone H4 lysine 16 acetylation : from genome regulation to tumoral progressi...
Histone modifications play crucial roles in genome regulation with lysine acetylation being implicat...
Histone modifications play crucial roles in genome regulation with lysine acetylation being implicat...
Histone N (C)-terminal tails play an important role in chromatin remodeling and gene regulation. Pos...
Regulation of histone acetylation is fundamental to the utilization of eukaryotic genomes in chromat...
Regulation of histone acetylation is fundamental to the utilization of eukaryotic genomes in chromat...
Regulation of histone acetylation is fundamental to the utilization of eukaryotic genomes in chromat...
Regulation of histone acetylation is fundamental to the utilization of eukaryotic genomes in chromat...
How post-translational histone modifications regulate DNA utilization constitutes one of the central...
Regulation of histone acetylation is fundamental to the utilization of eukaryotic genomes in chromat...