Uncoupling of genomic and epigenetic signals in the maintenance and inheritance of heterochromatin domains in fission yeast.

dc.contributor.author

Wheeler, Bayly S

dc.contributor.author

Ruderman, Brandon T

dc.contributor.author

Willard, Huntington F

dc.contributor.author

Scott, Kristin C

dc.date.accessioned

2022-09-01T14:57:10Z

dc.date.available

2022-09-01T14:57:10Z

dc.date.issued

2012-02

dc.date.updated

2022-09-01T14:57:08Z

dc.description.abstract

Many essential aspects of genome function, including gene expression and chromosome segregation, are mediated throughout development and differentiation by changes in the chromatin state. Along with genomic signals encoded in the DNA, epigenetic processes regulate heritable gene expression patterns. Genomic signals such as enhancers, silencers, and repetitive DNA, while required for the establishment of alternative chromatin states, have an unclear role in epigenetic processes that underlie the persistence of chromatin states throughout development. Here, we demonstrate in fission yeast that the maintenance and inheritance of ectopic heterochromatin domains are independent of the genomic sequences necessary for their de novo establishment. We find that both structural heterochromatin and gene silencing can be stably maintained over an ~10-kb domain for up to hundreds of cell divisions in the absence of genomic sequences required for heterochromatin establishment, demonstrating the long-term persistence and stability of this chromatin state. The de novo heterochromatin, despite the absence of nucleation sequences, is also stably inherited through meiosis. Together, these studies provide evidence for chromatin-dependent, epigenetic control of gene silencing that is heritable, stable, and self-sustaining, even in the absence of the originating genomic signals.

dc.identifier

genetics.111.137083

dc.identifier.issn

0016-6731

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1943-2631

dc.identifier.uri

https://hdl.handle.net/10161/25641

dc.language

eng

dc.publisher

Oxford University Press (OUP)

dc.relation.ispartof

Genetics

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10.1534/genetics.111.137083

dc.subject

Heterochromatin

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Schizosaccharomyces

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Genomics

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Cell Division

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Meiosis

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Transcription, Genetic

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Epigenesis, Genetic

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Gene Expression Regulation, Fungal

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Gene Silencing

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Gene Order

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Genome, Fungal

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Models, Biological

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Genetic Loci

dc.title

Uncoupling of genomic and epigenetic signals in the maintenance and inheritance of heterochromatin domains in fission yeast.

dc.type

Journal article

duke.contributor.orcid

Ruderman, Brandon T|0000-0002-9606-4601

pubs.begin-page

549

pubs.end-page

557

pubs.issue

2

pubs.organisational-group

Duke

pubs.organisational-group

School of Medicine

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Faculty

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Basic Science Departments

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Clinical Science Departments

pubs.organisational-group

Molecular Genetics and Microbiology

pubs.organisational-group

Emergency Medicine

pubs.publication-status

Published

pubs.volume

190

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