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Set1 regulates telomere function via H3K4 methylation-dependent and -independent pathways and calibrates the abundance of telomere maintenance factors
被引:2
作者:

Jezek, Meagan
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Univ Maryland Baltimore Cty, Dept Biol Sci, Baltimore, MD 21250 USA Univ Maryland Baltimore Cty, Dept Biol Sci, Baltimore, MD 21250 USA

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Negesse, Maraki Y.
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Univ Maryland Baltimore Cty, Dept Biol Sci, Baltimore, MD 21250 USA Univ Maryland Baltimore Cty, Dept Biol Sci, Baltimore, MD 21250 USA

Smith, Zachary M.
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Univ Maryland Baltimore Cty, Dept Biol Sci, Baltimore, MD 21250 USA Univ Maryland Baltimore Cty, Dept Biol Sci, Baltimore, MD 21250 USA

Orosz, Alexander
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Univ Maryland Baltimore Cty, Dept Biol Sci, Baltimore, MD 21250 USA Univ Maryland Baltimore Cty, Dept Biol Sci, Baltimore, MD 21250 USA

Green, Erin M.
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机构:
Univ Maryland Baltimore Cty, Dept Biol Sci, Baltimore, MD 21250 USA
Univ Maryland, Marlene & Stewart Greenebaum Comprehens Canc Ctr, Sch Med, Baltimore, MD 21201 USA Univ Maryland Baltimore Cty, Dept Biol Sci, Baltimore, MD 21250 USA
机构:
[1] Univ Maryland Baltimore Cty, Dept Biol Sci, Baltimore, MD 21250 USA
[2] Univ Maryland, Marlene & Stewart Greenebaum Comprehens Canc Ctr, Sch Med, Baltimore, MD 21201 USA
基金:
美国国家卫生研究院;
美国国家科学基金会;
关键词:
SACCHAROMYCES-CEREVISIAE TELOMERES;
LYSINE;
4;
METHYLATION;
HISTONE H3;
H2B UBIQUITYLATION;
GENOME-WIDE;
COMPLEX;
UBIQUITINATION;
COMPASS;
PHOSPHORYLATION;
TRIMETHYLATION;
D O I:
10.1091/mbc.E22-06-0213
中图分类号:
Q2 [细胞生物学];
学科分类号:
071009 ;
090102 ;
摘要:
Set1 is an H3K4 methyltransferase that comprises the catalytic subunit of the COMPASS complex and has been implicated in transcription, DNA repair, cell cycle control, and numerous other genomic functions. Set1 also promotes proper telomere maintenance, as cells lacking Set1 have short telomeres and disrupted subtelomeric gene repression; howev-er, the precise role for Set1 in these processes has not been fully defined. In this study, we have tested mutants of Set1 and the COMPASS complex that differentially alter H3K4 methylation status, and we have attempted to separate catalytic and noncatalytic functions of Set1. Our data reveal that Set1-dependent subtelomeric gene repression relies on its cata-lytic activity toward H3K4, whereas telomere length is regulated by Set1 catalytic activity but likely independent of the H3K4 substrate. Furthermore, we uncover a role for Set1 in calibrating the abundance of critical telomere maintenance proteins, including components of the telomerase holoenzyme and members of the telomere capping CST (Cdc13-Stn1-Ten1) com-plex, through both transcriptional and posttranscriptional pathways. Altogether, our data provide new insights into the H3K4 methylation-dependent and-independent roles for Set1 in telomere maintenance in yeast and shed light on possible roles for Set1-related methyl-transferases in other systems.
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