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PMID: 15282608 Published · ppublish English

Structural determinants for generating centromeric chromatin.

Nature ·Vol. 430 ·No. 6999 ·2004-08-09

Black Ben E, Foltz Daniel R, Chakravarthy Srinivas, Luger Karolin, Woods Virgil L, Cleveland Don W

Abstract

Mammalian centromeres are not defined by a consensus DNA sequence. In all eukaryotes a hallmark of functional centromeres--both normal ones and those formed aberrantly at atypical loci--is the accumulation of centromere protein A (CENP-A), a histone variant that replaces H3 in centromeric nucleosomes. Here we show using deuterium exchange/mass spectrometry coupled with hydrodynamic measures that CENP-A and histone H4 form sub-nucleosomal tetramers that are more compact and conformationally more rigid than the corresponding tetramers of histones H3 and H4. Substitution into histone H3 of the domain of CENP-A responsible for compaction is sufficient to direct it to centromeres. Thus, the centromere-targeting domain of CENP-A confers a unique structural rigidity to the nucleosomes into which it assembles, and is likely to have a role in maintaining centromere identity.

Article Info
Journal
Nature
Abbr.
Nature
Published
2004-08-09
Indexed
2004-07-29
Updated
2015-07-11
Language
English
Country/Region
England
NLM ID
0410462
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