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Q27936606-6A282E79-5FE2-460B-91BC-6C1B8BD1F183
Q27936606-6A282E79-5FE2-460B-91BC-6C1B8BD1F183
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http://www.wikidata.org/entity/statement/Q27936606-6A282E79-5FE2-460B-91BC-6C1B8BD1F183
Quiescent Saccharomyces cerevisiae forms telomere hyperclusters at the nuclear membrane vicinity through a multifaceted mechanism involving Esc1, the Sir complex, and chromatin condensation.
P2860
Q27936606-6A282E79-5FE2-460B-91BC-6C1B8BD1F183
BestRank
Statement
http://www.wikidata.org/entity/statement/Q27936606-6A282E79-5FE2-460B-91BC-6C1B8BD1F183
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wasDerivedFrom
105a06ccef9a1fe1bb2cb46d2da845df062ba21e
P2860
The Saccharomyces cerevisiae linker histone Hho1p is essential for chromatin compaction in stationary phase and is displaced by transcription.