Slx5 promotes transcriptional silencing and is required for robust growth in the absence of Sir2

被引:26
作者
Darst, Russell P. [1 ]
Garcia, Sandra N. [1 ]
Koch, Melissa R. [1 ]
Pillus, Lorraine [1 ]
机构
[1] Univ Calif San Diego, Dept Mol Biol, Mol Biol Sect, Div Biol Sci,Moores Canc Ctr, La Jolla, CA 92093 USA
关键词
D O I
10.1128/MCB.01291-07
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
The broadly conserved Sir2 NAD(+)-dependent deacetyllase is required for chromatin silencing. Here we report the discovery of physical and functional links between Sir2 and Slx5 (Hex3), a RING domain protein and subunit of the Slx5/8 complex column, which is a ubiquitin E3 ligase that targets sumoylated proteins. Slx5 interacted with Sir2 by two-hybrid and glutathione S-transferase-binding assays and was found to promote silencing of genes at telomeric or ribosomall DNA (rDNA) loci. However, deletion of SLX5 had no detectable effect on the distribution of silent chromatin components and only slightly altered the deacetylation of histone H4 lysine 16 at the telomere. In vivo assays indicated that Sir2-dependent silencing was functionally intact in the absence of Slx5. Although no previous reports suggest that Sir2 contributes to the fitness of yeast populations, we found that Sir2 was required for maximal growth in slx5 Delta mutant cells. A similar requirement was observed for mutants of the SUMO isopeptidase Ulp2/Smt4. The contribution of Sir2 to optimal growth was not due to known Sir2 roles in mating-type determination or rDNA maintenance but was connected to a role of sumoylation in transcriptional silencing. These results indicate that Sir2 and Slx5 jointly contribute to transcriptional silencing and robust cellular growth.
引用
收藏
页码:1361 / 1372
页数:12
相关论文
共 82 条
[31]   Chromosomal gradient of histone acetylation established by Sas2p and Sir2p functions as a shield against gene silencing [J].
Kimura, A ;
Umehara, T ;
Horikoshi, M .
NATURE GENETICS, 2002, 32 (03) :370-377
[32]   SIR2 regulates recombination between different rDNA repeats, but not recombination within individual rRNA genes in yeast [J].
Kobayashi, T ;
Horiuchi, T ;
Tongaonkar, P ;
Vu, L ;
Nomura, M .
CELL, 2004, 117 (04) :441-453
[33]  
KOSHLAND D, 1987, METHOD ENZYMOL, V155, P351
[34]  
Le SY, 1997, YEAST, V13, P1029, DOI 10.1002/(SICI)1097-0061(19970915)13:11<1029::AID-YEA160>3.0.CO
[35]  
2-1
[36]   Role of yeast SIR genes and mating type in directing DNA double-strand breaks to homologous and non-homologous repair paths [J].
Lee, SE ;
Pâques, F ;
Sylvan, J ;
Haber, JE .
CURRENT BIOLOGY, 1999, 9 (14) :767-770
[37]   Tying up loose ends:: nonhomologous end-joining in Saccharomyces cerevisiae [J].
Lewis, LK ;
Resnick, MA .
MUTATION RESEARCH-FUNDAMENTAL AND MOLECULAR MECHANISMS OF MUTAGENESIS, 2000, 451 (1-2) :71-89
[38]   The yeast ULP2 (SMT4) gene encodes a novel protease specific for the ubiquitin-like Smt3 protein [J].
Li, SJ ;
Hochstrasser, M .
MOLECULAR AND CELLULAR BIOLOGY, 2000, 20 (07) :2367-2377
[39]  
LI T, 2007, CELL CYCLE, V6, P2800
[40]   Stimulation of in vitro sumoylation by Slx5-Slx8: Evidence for a functional interaction with the SUMO pathway [J].
Li, Tatsuya ;
Mullen, Janet R. ;
Slagle, Christopher E. ;
Brill, Steven J. .
DNA REPAIR, 2007, 6 (11) :1679-1691