Molecular Biology of the Cell · 2016 · 40 citations · 47 references
Centromeric chromatin is required for kinetochore assembly during mitosis and accurate chromosome segregation. A unique nucleosome containing the histone H3-specific variant CENP-A is the defining feature of centromeric chromatin. In humans, CENP-A nucleosome deposition occurs in early G1 just after mitotic exit at the time when the CENP-A deposition machinery localizes to centromeres. The mechanism by which CENP-A is deposited onto an existing, condensed chromatin template is not understood. Here we identify the selective association of the CENP-A chaperone HJURP with the condensin II complex and not condensin I. We show CAPH2 is present at centromeres during early G1 at the time when CENP-A deposition is occurring. CAPH2 localization to early G1 centromeres is dependent on HJURP. The CENP-A chaperone and assembly factor HJURP induces decondensation of a noncentromeric LacO array, and this decondensation is modulated by the condensin II complex. We show that condensin II function at the centromere is required for new CENP-A deposition in human cells. These data demonstrate that HJURP selectively recruits the condensin II chromatin-remodeling complex to facilitate CENP-A deposition in human cells.
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The human CENP-A centromeric nucleosome-associated complex
Daniel R. Foltz, Lars E.T. Jansen, Ben E. Black et al. · Nature Cell Biology · 2006 · 737 citations
Centromere-Specific Assembly of CENP-A Nucleosomes Is Mediated by HJURP
Daniel R. Foltz, Lars E.T. Jansen, Aaron O. Bailey et al. · Cell · 2009 · 667 citations · Full text
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Lars E.T. Jansen, Ben E. Black, Daniel R. Foltz et al. · The Journal of Cell Biology · 2007 · 636 citations · Full text
HJURP Is a Cell-Cycle-Dependent Maintenance and Deposition Factor of CENP-A at Centromeres
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