ATP-dependent chromatin remodelers are molecular machines that control genome organization by repositioning, ejecting, or editing nucleosomes, activities that confer them essential regulatory roles on gene expression and DNA replication. Here, we investigate the molecular mechanism of active nucleosome sliding by means of molecular dynamics simulations of the Snf2 remodeler translocase in complex with a nucleosome. During its inchworm motion driven by ATP consumption, the translocase overwrites the original nucleosome energy landscape via steric and electrostatic interactions to induce sliding of nucleosomal DNA unidirectionally. The sliding is initiated at the remodeler binding location via the generation of a pair of twist defects, which ...
Chromatin remodelers are molecular motors that play essential roles in the regulation of nucleosome ...
Chromatin remodelers are molecular motors that play essential roles in the regulation of nucleosome ...
Accounting for enzyme-mediated active sliding, disassembly, and sequence-dependent positioning of nu...
ATP-dependent chromatin remodelers are molecular machines that control genome organization by reposi...
ATP-dependent chromatin remodelers are molecular machines that control genome organization by reposi...
Remarkably, a long eukaryotic genome, a few meters in length, is tightly packed in the array of nucl...
In the cell, genomic DNA is tightly packaged into chromatin, the most basic unit of which is a histo...
ATP-dependent chromatin remodelling enzymes (remodellers) regulate DNA accessibility in eukaryotic g...
ATP-dependent chromatin remodelling enzymes (remodellers) regulate DNA accessibility in eukaryotic g...
Chromatin remodelers are molecular motors that reposition and restructure nucleosomes to regulate ge...
Chromatin is highly regulated nucleoprotein complex facilitating the dynamic balance between genome ...
Eukaryotic genomes are packaged into chromatin: a highly heterogeneous structure composed of nucleic...
Chromatin remodelling is the ATP-dependent change in nucleosome organisation driven by Snf2 family A...
Chromatin remodelling is the ATP-dependent change in nucleosome organisation driven by Snf2 family A...
Eukaryotic genomes are packaged into chromatin: a highly heterogeneous structure composed of nucleic...
Chromatin remodelers are molecular motors that play essential roles in the regulation of nucleosome ...
Chromatin remodelers are molecular motors that play essential roles in the regulation of nucleosome ...
Accounting for enzyme-mediated active sliding, disassembly, and sequence-dependent positioning of nu...
ATP-dependent chromatin remodelers are molecular machines that control genome organization by reposi...
ATP-dependent chromatin remodelers are molecular machines that control genome organization by reposi...
Remarkably, a long eukaryotic genome, a few meters in length, is tightly packed in the array of nucl...
In the cell, genomic DNA is tightly packaged into chromatin, the most basic unit of which is a histo...
ATP-dependent chromatin remodelling enzymes (remodellers) regulate DNA accessibility in eukaryotic g...
ATP-dependent chromatin remodelling enzymes (remodellers) regulate DNA accessibility in eukaryotic g...
Chromatin remodelers are molecular motors that reposition and restructure nucleosomes to regulate ge...
Chromatin is highly regulated nucleoprotein complex facilitating the dynamic balance between genome ...
Eukaryotic genomes are packaged into chromatin: a highly heterogeneous structure composed of nucleic...
Chromatin remodelling is the ATP-dependent change in nucleosome organisation driven by Snf2 family A...
Chromatin remodelling is the ATP-dependent change in nucleosome organisation driven by Snf2 family A...
Eukaryotic genomes are packaged into chromatin: a highly heterogeneous structure composed of nucleic...
Chromatin remodelers are molecular motors that play essential roles in the regulation of nucleosome ...
Chromatin remodelers are molecular motors that play essential roles in the regulation of nucleosome ...
Accounting for enzyme-mediated active sliding, disassembly, and sequence-dependent positioning of nu...