Reaction cycle of the yeast Isw2 chromatin remodeling complex
Open Access
- 9 September 2004
- journal article
- Published by Springer Nature in The EMBO Journal
- Vol. 23 (19), 3836-3843
- https://doi.org/10.1038/sj.emboj.7600364
Abstract
Members of the ISWI family of chromatin remodeling factors hydrolyze ATP to reposition nucleosomes along DNA. Here we show that the yeast Isw2 complex interacts with DNA in a nucleotide‐dependent manner at physiological ionic strength. Isw2 efficiently binds DNA in the absence of nucleotides and in the presence of a nonhydrolyzable ATP analog. Conversely, ADP promotes the dissociation of Isw2 from DNA. In contrast, Isw2 remains bound to mononucleosomes through multiple cycles of ATP hydrolysis. Solution studies show that Isw2 undergoes nucleotide‐dependent alterations in conformation not requiring ATP hydrolysis. Our results indicate that during an Isw2 remodeling reaction, hydrolysis of successive ATP molecules coincides with cycles of DNA binding, release, and rebinding involving elements of Isw2 distinct from those interacting with nucleosomes. We propose that progression of the DNA‐binding site occurs while nucleosome core contacts are maintained and generates a force dissipated by disruption of histone–DNA interactions.Keywords
This publication has 44 references indexed in Scilit:
- Chromatin Remodeling In VivoMolecular Cell, 2003
- Chromatin Remodeling Activities Act on UV-damaged Nucleosomes and Modulate DNA Damage Accessibility to PhotolyaseJournal of Biological Chemistry, 2003
- Rad54p Is a Chromatin Remodeling Enzyme Required for Heteroduplex DNA Joint Formation with ChromatinJournal of Biological Chemistry, 2003
- Translating the Histone CodeScience, 2001
- Sequence motifs and free energies of selected natural and non-natural nucleosome positioning DNA sequencesJournal of Molecular Biology, 1999
- Helicases: a unifying structural theme?Current Opinion in Structural Biology, 1998
- Kinetics of the RNA−DNA Helicase Activity of Escherichia coli Transcription Termination Factor Rho. 2. Processivity, ATP Consumption, and RNA BindingBiochemistry, 1997
- Helicases: amino acid sequence comparisons and structure-function relationshipsCurrent Opinion in Structural Biology, 1993
- Allosteric Effects of Nucleotide Cofactors on Escherichia coli Rep Helicase&DNA BindingScience, 1992
- Interaction of recA protein with single-stranded DNAJournal of Molecular Biology, 1985