AbstractThe human SWI/SNF complex remodels nucleosome structure in an ATP-dependent manner, although the nature of this change has not been determined. Here we show that hSWI/SNF and ATP generate an altered nucleosomal structure that is stable in the absence of SWI/SNF. This product has an altered sensitivity to digestion by DNAse, restriction enzymes, and micrococcal nuclease, and an increased affinity for GAL4. It has the same protein composition but is approximately twice the size of a normal nucleosome. Incubation of the altered nucleosome with hSWI/SNF converts this structure back to a standard nucleosome in an ATP-dependent process. These results suggest that hSWI/SNF acts by facilitating an exchange between normal and altered, more a...
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...
International audienceChromatin remodelers are complexes able to both alter histone-DNA interactions...
AbstractThe human SWI/SNF complex remodels nucleosome structure in an ATP-dependent manner, although...
SWI-SNF is an ATP-dependent chromatin remodeling complex that disrupts DNA-histone interactions. Sev...
SWI-SNF is an ATP-dependent chromatin remodeling complex that disrupts DNA-histone interactions. Sev...
Contains fulltext : 129329.pdf (Publisher’s version ) (Closed access)SWI-SNF is an...
The physical structure and the compact nature of the eukaryotic genome present a functional barrier ...
ATP-dependent chromatin remodeling enzymes, such as SWI/SNF, hydrolyze thousands of ATPs to regulate...
The generation of a local chromatin topology conducive to transcription is a key step in gene regula...
Eukaryotic genomes are packaged into chromatin: a highly heterogeneous structure composed of nucleic...
Eukaryotic genomes are packaged into chromatin: a highly heterogeneous structure composed of nucleic...
ABSTRACT ATP-dependent nucleosome remodeling complexes are crucial for relieving nucleosome repressi...
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...
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...
International audienceChromatin remodelers are complexes able to both alter histone-DNA interactions...
AbstractThe human SWI/SNF complex remodels nucleosome structure in an ATP-dependent manner, although...
SWI-SNF is an ATP-dependent chromatin remodeling complex that disrupts DNA-histone interactions. Sev...
SWI-SNF is an ATP-dependent chromatin remodeling complex that disrupts DNA-histone interactions. Sev...
Contains fulltext : 129329.pdf (Publisher’s version ) (Closed access)SWI-SNF is an...
The physical structure and the compact nature of the eukaryotic genome present a functional barrier ...
ATP-dependent chromatin remodeling enzymes, such as SWI/SNF, hydrolyze thousands of ATPs to regulate...
The generation of a local chromatin topology conducive to transcription is a key step in gene regula...
Eukaryotic genomes are packaged into chromatin: a highly heterogeneous structure composed of nucleic...
Eukaryotic genomes are packaged into chromatin: a highly heterogeneous structure composed of nucleic...
ABSTRACT ATP-dependent nucleosome remodeling complexes are crucial for relieving nucleosome repressi...
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...
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...
International audienceChromatin remodelers are complexes able to both alter histone-DNA interactions...