Functional dissection of the NuA4 histone acetyltransferase reveals its role as a genetic hub and that Eaf1 is essential for complex integrity

被引:90
作者
Mitchell, Leslie [1 ,2 ]
Lambert, Jean-Philippe [1 ,2 ]
Gerdes, Maria [1 ,2 ]
Al-Madhoun, Ashraf S. [1 ]
Skerjanc, Ilona S. [1 ]
Figeys, Daniel [1 ,2 ]
Baetz, Kristin [1 ,2 ]
机构
[1] Univ Ottawa, Dept Biochem Microbiol & Immunol, Ottawa, ON K1H 8M5, Canada
[2] Univ Ottawa, Ottawa Inst Syst Biol, Ottawa, ON K1H 8M5, Canada
关键词
D O I
10.1128/MCB.01653-07
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 Saccharomyces cerevisiae NuA4 histone acetyltransferase complex catalyzes the acetylation of histone H4 and the histone variant Htz1 to regulate key cellular events, including transcription, DNA repair, and faithful chromosome segregation. To further investigate the cellular processes impacted by NuA4, we exploited the nonessential subunits of the complex to build an extensive NuA4 genetic-interaction network map. The map reveals that NuA4 is a genetic hub whose function buffers a diverse range of cellular processes, many not previously linked to the complex, including Golgi complex-to-vacuole vesicle-mediated transport. Further, we probe the role that nonessential subunits play in NuA4 complex integrity. We find that most nonessential subunits have little impact on NuA4 complex integrity and display between 12 and 42 genetic interactions. In contrast, the deletion of EAF1 causes the collapse of the NuA4 complex and displays 148 genetic interactions. Our study indicates that Eaf1 plays a crucial function in NuA4 complex integrity. Further, we determine that Eaf5 and EaF7 form a subcomplex, which reflects their similar genetic interaction profiles and phenotypes. Our integrative study demonstrates that genetic interaction maps are valuable in dissecting complex structure and provides insight into why the human NuA4 complex, Tip60, has been associated with a diverse range of pathologies.
引用
收藏
页码:2244 / 2256
页数:13
相关论文
共 70 条
[1]   NuA4, an essential transcription adaptor/histone H4 acetyltransferase complex containing Esa1p and the ATM-related cofactor Tra1p [J].
Allard, S ;
Utley, RT ;
Savard, J ;
Clarke, A ;
Grant, P ;
Brandl, CJ ;
Pillus, L ;
Workman, JL ;
Côté, J .
EMBO JOURNAL, 1999, 18 (18) :5108-5119
[2]   Telomeric heterochromatin boundaries require NuA4-dependent acetylation of histone variant H2A.Z in Saccharomyces cerevisiae [J].
Babiarz, JE ;
Halley, JE ;
Rine, J .
GENES & DEVELOPMENT, 2006, 20 (06) :700-710
[3]   Transcriptional coregulation by the cell integrity mitogen-activated protein kinase Slt2 and the cell cycle regulator Swi4 [J].
Baetz, K ;
Moffat, J ;
Haynes, J ;
Chang, M ;
Andrews, B .
MOLECULAR AND CELLULAR BIOLOGY, 2001, 21 (19) :6515-6528
[4]   Acetylation of histone H4 by Esa1 is required for DNA double-strand break repair [J].
Bird, AW ;
Yu, DY ;
Pray-Grant, MG ;
Qiu, QF ;
Harmon, KE ;
Megee, PC ;
Grant, PA ;
Smith, MM ;
Christman, MF .
NATURE, 2002, 419 (6905) :411-415
[5]   Direct physical and functional interaction of the NuA4 complex components Yaf9p and Swc4p [J].
Bittner, CB ;
Zeisig, DT ;
Zeisig, BB ;
Slany, RK .
EUKARYOTIC CELL, 2004, 3 (04) :976-983
[6]   Genomic screen for vacuolar protein sorting genes in Saccharomyces cerevisiae [J].
Bonangelino, CJ ;
Chavez, EM ;
Bonifacino, JS .
MOLECULAR BIOLOGY OF THE CELL, 2002, 13 (07) :2486-2501
[7]   Yeast enhancer of Polycomb defines global Esal-dependent acetylation of chromatin [J].
Boudreault, AA ;
Cronier, D ;
Selleck, W ;
Lacoste, N ;
Utley, RT ;
Allard, SP ;
Savard, J ;
Lane, WS ;
Tan, S ;
Côté, J .
GENES & DEVELOPMENT, 2003, 17 (11) :1415-1428
[8]   Recruitment of HAT complexes by direct activator interactions with the ATM-related tra1 subunit [J].
Brown, CE ;
Howe, L ;
Sousa, K ;
Alley, SC ;
Carrozza, MJ ;
Tan, S ;
Workman, JL .
SCIENCE, 2001, 292 (5525) :2333-2337
[9]   From worm genetic networks to complex human diseases [J].
Bussey, Howard ;
Andrews, Brenda ;
Boone, Charles .
NATURE GENETICS, 2006, 38 (08) :862-863
[10]   Histone H3 methylation by Set2 directs deacetylation of coding regions by Rpd3S to suppress spurious intragenic transcription [J].
Carrozza, MJ ;
Li, B ;
Florens, L ;
Suganuma, T ;
Swanson, SK ;
Lee, KK ;
Shia, WJ ;
Anderson, S ;
Yates, J ;
Washburn, MP ;
Workman, JL .
CELL, 2005, 123 (04) :581-592