Chaperone-mediated assembly of centromeric chromatinin vitro
- 18 April 2006
- journal article
- research article
- Published by Proceedings of the National Academy of Sciences in Proceedings of the National Academy of Sciences
- Vol. 103 (16) , 6172-6177
- https://doi.org/10.1073/pnas.0601686103
Abstract
Every eukaryotic chromosome requires a centromere for attachment to spindle microtubules for chromosome segregation. Although centromeric DNA sequences vary greatly among species, centromeres are universally marked by the presence of a centromeric histone variant, centromeric histone 3 (CenH3), which replaces canonical histone H3 in centromeric nucleosomes. Conventional chromatin is maintained in part by histone chaperone complexes, which deposit the S phase-limited (H3) and constitutive (H3.3) forms of histone 3. However, the mechanism that deposits CenH3 specifically at centromeres and faithfully maintains its chromosome location through mitosis and meiosis is unknown. To address this problem, we have biochemically purified a soluble assembly complex that targets tagged CenH3 to centromeres in Drosophila cells. Two different affinity procedures led to purification of the same complex, which consists of CenH3, histone H4, and a single protein chaperone, RbAp48, a highly abundant component of various chromatin assembly, remodeling, and modification complexes. The corresponding CenH3 assembly complex reconstituted in vitro is sufficient for chromatin assembly activity, without requiring additional components. The simple CenH3 assembly complex is in contrast to the multisubunit complexes previously described for H3 and H3.3, suggesting that centromeres are maintained by a passive mechanism that involves exclusion of the complexes that deposit canonical H3s during replication and transcription.Keywords
This publication has 52 references indexed in Scilit:
- p55, the Drosophila Ortholog of RbAp46/RbAp48, Is Required for the Repression of dE2F2/RBF-Regulated GenesMolecular and Cellular Biology, 2004
- Mis16 and Mis18 Are Required for CENP-A Loading and Histone Deacetylation at CentromeresCell, 2004
- Functional Complementation of Human Centromere Protein A (CENP-A) by Cse4p from Saccharomyces cerevisiaeMolecular and Cellular Biology, 2004
- From Silencing to Gene ExpressionCell, 2004
- Histone H3.1 and H3.3 Complexes Mediate Nucleosome Assembly Pathways Dependent or Independent of DNA SynthesisCell, 2004
- Chromatin Assembly In Vitro with Purified Recombinant ACF and NAP-1Published by Elsevier ,2003
- A Novel Chromatin Immunoprecipitation and Array (CIA) Analysis Identifies a 460-kb CENP-A-Binding Neocentromere DNAGenome Research, 2001
- A minimal peptide substrate in biotin holoenzyme synthetase‐catalyzed biotinylationProtein Science, 1999
- The ancient regulatory-protein family of WD-repeat proteinsNature, 1994
- Generation of different nucleosome spacing periodicities in vitroJournal of Molecular Biology, 1988