Distinct Roles for the Essential MYST Family HAT Esa1p in Transcriptional SilencingD
Among acetyltransferases, the MYST family enzyme Esa1p is distinguished for its essential function and contribution to transcriptional activation and DNA double-stranded break repair. Here we report that Esa1p also plays a key role in silencing RNA polymerase II (Pol II)-transcribed genes at telomer...
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Veröffentlicht in: | Molecular biology of the cell 2006-04, Vol.17 (4), p.1744-1757 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | Among acetyltransferases, the MYST family enzyme Esa1p is distinguished for its essential function and contribution to transcriptional activation and DNA double-stranded break repair. Here we report that Esa1p also plays a key role in silencing RNA polymerase II (Pol II)-transcribed genes at telomeres and within the ribosomal DNA (rDNA) of the nucleolus. These effects are mediated through Esa1p's HAT activity and correlate with changes within the nucleolus. Esa1p is enriched within the rDNA, as is the NAD-dependent protein deacetylase Sir2p, and the acetylation levels of key Esa1p histone targets are reduced in the rDNA in
esa1
mutants. Although mutants of both
ESA1
and
SIR2
have enhanced rates of rDNA recombination,
esa1
effects are more modest yet result in distinct structural changes of rDNA chromatin. Surprisingly, increased expression of
ESA1
can bypass the requirement for Sir2p in rDNA silencing, suggesting that these two enzymes with seemingly opposing activities both contribute to achieve optimal nucleolar chromatin structure and function. |
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ISSN: | 1059-1524 |
DOI: | 10.1091/mbc.E05-07-0613 |