ISWI proteins form the catalytic core of a subset of ATP-dependent chromatin remodeling activities in eukaryotes from yeast to man. Many of these complexes have been found to reposition nucleosomes but with different directionalities. We find that the yeast Isw1a, Isw2, and Chd1 enzymes preferentially move nucleosomes toward more central locations on short DNA fragments whereas Isw1b does not. Importantly, the inherent positioning properties of the DNA play an important role in determining where nucleosomes are relocated to by all of these enzymes. However, a key difference is that the Isw1a, Isw2, and Chd1 enzymes are unable to move nucleosomes to positions closer than 15 bp from a DNA end, whereas Isw1b can. We also find that there is a c...
The regulation of chromatin structure is controlled by a family of molecular motors called chromatin...
Eukaryotic nuclei are packaged into a higher-order, tightly regulated structure called chromatin. Th...
The regulation of chromatin structure is controlled by a family of molecular motors called chromatin...
ISWI type remodelers mobilize and space nucleosomes. These ATP-dependent remodeling complexes have ...
The ISWI family of ATP-dependent chromatin remodelers represses transcription by changing nucleosome...
ATP-dependent nucleosome remodelers influence genetic processes by altering nucleosome occupancy, po...
Chromatin remodelers utilize the energy derived from ATP hydrolysis to mobilize nucleosomes. ISWI re...
ATP-dependent nucleosome remodelers influence genetic processes by altering nucleosome occupancy, po...
The ISWI family of ATP-dependent chromatin remodelers represses transcription by changing nucleosome...
The chromatin remodeler ISWI is capable of repositioning clusters of nucleosomes to create well-orde...
SummaryHow chromatin remodelers cooperate to organize nucleosomes around the start and end of genes ...
Thesis (Ph. D.)--University of Washington, 2003Members of the ISWI class of ATP-dependent chromatin ...
Cellular DNA is packaged into chromatin, which is composed of regularly-spaced nucleosomes with occa...
The positioning of nucleosomes within the coding regions of eukaryotic genes is aligned with respect...
The positioning of nucleosomes within the coding regions of eukaryotic genes is aligned with respect...
The regulation of chromatin structure is controlled by a family of molecular motors called chromatin...
Eukaryotic nuclei are packaged into a higher-order, tightly regulated structure called chromatin. Th...
The regulation of chromatin structure is controlled by a family of molecular motors called chromatin...
ISWI type remodelers mobilize and space nucleosomes. These ATP-dependent remodeling complexes have ...
The ISWI family of ATP-dependent chromatin remodelers represses transcription by changing nucleosome...
ATP-dependent nucleosome remodelers influence genetic processes by altering nucleosome occupancy, po...
Chromatin remodelers utilize the energy derived from ATP hydrolysis to mobilize nucleosomes. ISWI re...
ATP-dependent nucleosome remodelers influence genetic processes by altering nucleosome occupancy, po...
The ISWI family of ATP-dependent chromatin remodelers represses transcription by changing nucleosome...
The chromatin remodeler ISWI is capable of repositioning clusters of nucleosomes to create well-orde...
SummaryHow chromatin remodelers cooperate to organize nucleosomes around the start and end of genes ...
Thesis (Ph. D.)--University of Washington, 2003Members of the ISWI class of ATP-dependent chromatin ...
Cellular DNA is packaged into chromatin, which is composed of regularly-spaced nucleosomes with occa...
The positioning of nucleosomes within the coding regions of eukaryotic genes is aligned with respect...
The positioning of nucleosomes within the coding regions of eukaryotic genes is aligned with respect...
The regulation of chromatin structure is controlled by a family of molecular motors called chromatin...
Eukaryotic nuclei are packaged into a higher-order, tightly regulated structure called chromatin. Th...
The regulation of chromatin structure is controlled by a family of molecular motors called chromatin...