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Synthetic heterochromatin bypasses RNAi and centromeric repeats to establish functional centromeres

Authors :
Kagansky, Alexander
Diego Folco, Hernan
Almeida, Ricardo
Pidoux, Alison A.L.
Boukaba, Abdel Halim
Simmer, Femke
Urano, Takeshi
Hamilton, Georgina G.L.
Allshire, Robin R.C.
Kagansky, Alexander
Diego Folco, Hernan
Almeida, Ricardo
Pidoux, Alison A.L.
Boukaba, Abdel Halim
Simmer, Femke
Urano, Takeshi
Hamilton, Georgina G.L.
Allshire, Robin R.C.
Source :
Science, 324 (5935
Publication Year :
2009

Abstract

In the central domain of fission yeast centromeres, the kinetochore is assembled on CENP-A cnp1 nucleosomes. Normally, small interfering RNAs generated from flanking outer repeat transcripts direct histone H3 lysine 9 methyltransferase Clr4 to homologous loci to form heterochromatin. Outer repeats, RNA interference (RNAi), and centromeric heterochromatin are required to establish CENP-A Cnpl chromatin. We demonstrated that tethering Clr4 via DNA-binding sites at euchromatic loci induces heterochromatin assembly, with or without active RNAi. This synthetic heterochromatin completely substitutes for outer repeats on plasmid-based minichromosomes, promoting de novo CENP-A Cnpl and kinetochore assembly, to allow their mitotic segregation, even with RNAi inactive. Thus, the role of outer repeats in centromere establishment is simply the provision of RNAi substrates to direct heterochromatin formation; H3K9 methylation-dependent heterochromatin is alone sufficient to form functional centromeres.<br />SCOPUS: ar.j<br />info:eu-repo/semantics/published

Details

Database :
OAIster
Journal :
Science, 324 (5935
Notes :
No full-text files, English
Publication Type :
Electronic Resource
Accession number :
edsoai.ocn908364604
Document Type :
Electronic Resource