Mizuguchi G, et al. (2007) Nonhistone Scm3 and histones CenH3-H4 assemble the core of centromere-specific nucleosomes. Cell 129(6):1153-64
Abstract: The budding yeast histone H3 variant, Cse4, replaces conventional histone H3 in centromeric chromatin and, together with centromere-specific DNA-binding factors, directs assembly of the kinetochore, a multiprotein complex mediating chromosome segregation. We have identified Scm3, a nonhistone protein that colocalizes with Cse4 and is required for its centromeric association. Bacterially expressed Scm3 binds directly to and reconstitutes a stoichiometric complex with Cse4 and histone H4 but not with conventional histone H3 and H4. A conserved acidic domain of Scm3 is responsible for directing the Cse4-specific interaction. Strikingly, binding of Scm3 can replace histones H2A-H2B from preassembled Cse4-containing histone octamers. This incompatibility between Scm3 and histones H2A-H2B is correlated with diminished in vivo occupancy of histone H2B, H2A, and H2AZ at centromeres. Our findings indicate that nonhistone Scm3 serves to assemble and maintain Cse4-H4 at centromeres and may replace histone H2A-H2B dimers in a centromere-specific nucleosome core.
| Status: Published | Type: Journal Article | PubMed ID: 17574026 |
Topics addressed in this paper
Number of different genes curated to this paper: 16
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| CBF1 | CBF2 | CEN3 | CEN4 | CEP3 | CSE4 | HHF1 | HHF2 | HHT1 | HHT2 | |
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| Topics | Genes linked to topics (#11 - 16 ) | |||||
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| HTA1 | HTA2 | HTB1 | HTB2 | MIF2 | SCM3 | |
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