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PMID: 16431364 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

A heterochromatin barrier partitions the fission yeast centromere into discrete chromatin domains.

Current biology : CB ·Vol. 16 ·No. 2 ·2006-01-24 ·Pages 119-29

Scott KC, Merrett SL, Willard HF

Abstract

Centromeres are cis-acting chromosomal domains that direct kinetochore formation, enabling faithful chromosome segregation. Centromeric regions of higher eukaryotes are structurally complex, consisting of various epigenetically modified chromatin types including specialized chromatin at the kinetochore itself, pericentromeric heterochromatin, and flanking euchromatin. Although the features necessary for the establishment and maintenance of discrete chromatin domains remain poorly understood, two models have been proposed based either on the passive convergence of competing activities involved in individual domain formation or, alternatively, on the action of specific genomic sequences and associated proteins to actively block the propagation of one chromatin type into another. Functional analysis of centromeric sequences located at the intersection of Schizosaccharomyces pombe central core chromatin and outer repeat heterochromatin identified a chromatin barrier that contains a transfer RNA (tRNA) gene. Deletion or modification of the barrier sequences result in the propagation of pericentromeric heterochromatin beyond its normal boundary. The tRNA gene is transcriptionally active, and barrier activity requires sequences necessary for RNA polymerase III transcription. Moreover, absence of the barrier results in abnormal meiotic chromosome segregation. The identification of DNA sequences with chromatin barrier activity at the fission yeast centromere provides a model for establishment of centromeric chromatin domains in higher eukaryotes.

MeSH Terms
Base Sequence Centromere/chemistry,genetics Chromatin Assembly and Disassembly Chromosome Segregation/genetics,physiology Gene Deletion Gene Expression Regulation, Fungal Gene Silencing Heterochromatin/chemistry,genetics,physiology Meiosis/physiology Molecular Sequence Data Mutagenesis, Site-Directed RNA, Transfer, Ala/genetics Schizosaccharomyces/cytology,genetics,growth & development
Chemicals
Heterochromatin RNA, Transfer, Ala
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Scott Kristin C
Institute for Genome Sciences and Policy, Duke University, 101 Science Drive, Durham, North Carolina 27708, USA.
Merrett Stephanie L
Willard Huntington F
Article Info
Journal
Current biology : CB
Abbr.
Curr Biol
ISSN
0960-9822
Published
2006-01-24
Pages
119-29
Language
English
Region
England
NLM ID
9107782
Subset
IM
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