A lysine-rich region in Dot1p is crucial for direct interaction with H2B ubiquitylation and high level methylation of H3K79

被引:30
作者
Oh, Seunghee [1 ]
Jeong, Kwiwan [1 ]
Kim, Hyunhee [1 ]
Kwon, Chang Seob [2 ]
Lee, Daeyoup [1 ]
机构
[1] Korea Adv Inst Sci & Technol, Dept Biol Sci, Taejon 305701, South Korea
[2] Korea Adv Inst Sci & Technol, Korea Sci Acad, Dept Biol & Chem, Pusan 614822, South Korea
关键词
Dot1p; Histone H2B monoubiquitylation; Histone H3 lysine 79 methylation; Saccharomyces cerevisiae; HISTONE H2B; H3; METHYLATION; SET DOMAIN; UBIQUITINATION; CHROMATIN; NUCLEOSOME; YEAST; METHYLTRANSFERASE; DNA; IDENTIFICATION;
D O I
10.1016/j.bbrc.2010.07.100
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
Dot1p is involved in maintenance of the heterochromatin boundary, the DNA damage response, and transcriptional regulation in yeast and animals. Dot1p is a histone H3 lysine 79 (H3K79) methyltransferase, but H3K79 trimethylation (H3K79me3) by Dot1p requires histone H2B monoubiquitylation (H2Bub) as a prerequisite. The underlying mechanism for H2Bub requirement has not been well elucidated. In this work, we found that nucleosomes containing H2Bub stimulate the yeast Dot1p to produce H3K79me3. A pulldown assay showed that the yeast Dot1p directly binds to ubiquitin. In addition, we demonstrate that a lysine-rich region (aa 101-140) in the first half of DNA binding domain of the Dot1p is critical in interaction with ubiquitin as well as binding to nucleosome core. Consistent with this, either deletion or point mutation of the lysine-rich region resulted in defect in global H3K79me3 accumulation and subtelomeric gene silencing in vivo. Taken together, our results indicate that a direct interaction between the lysine-rich region of Dot1p and the ubiquitin of H2Bub is required for H2Bub-mediated trans-tail regulation. (C) 2010 Elsevier Inc. All rights reserved.
引用
收藏
页码:512 / 517
页数:6
相关论文
共 33 条
[1]   Interplay of chromatin modifiers on a short basic patch of histone H4 tail defines the boundary of telomeric heterochromatin [J].
Altaf, Mohammed ;
Utley, Rhea T. ;
Lacoste, Nicolas ;
Tan, Song ;
Briggs, Scott D. ;
Cote, Jacques .
MOLECULAR CELL, 2007, 28 (06) :1002-1014
[2]   Gene silencing -: Trans-histone regulatory pathway in chromatin [J].
Briggs, SD ;
Xiao, TJ ;
Sun, ZW ;
Caldwell, JA ;
Shabanowitz, J ;
Hunt, DF ;
Allis, CD ;
Strahl, BD .
NATURE, 2002, 418 (6897) :498-498
[3]   Ubiquitination of histone H2B regulates chromatin dynamics by enhancing nucleosome stability [J].
Chandrasekharan, Mahesh B. ;
Huang, Fu ;
Sun, Zu-Wen .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2009, 106 (39) :16686-16691
[4]   Methylation of histone H3 by COMPASS requires ubiquitination of histone H2B by Rad6 [J].
Dover, J ;
Schneider, J ;
Tawiah-Boateng, MA ;
Wood, A ;
Dean, K ;
Johnston, M ;
Shilatifard, A .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2002, 277 (32) :28368-28371
[5]   Methylation of H3-lysine 79 is mediated by a new family of HMTases without a SET domain [J].
Feng, Q ;
Wang, HB ;
Ng, HH ;
Erdjument-Bromage, H ;
Tempst, P ;
Struhl, K ;
Zhang, Y .
CURRENT BIOLOGY, 2002, 12 (12) :1052-1058
[6]   A charge-based interaction between histone H4 and Dot1 is required for H3K79 methylation and telomere silencing: identification of a new trans-histone pathway [J].
Fingerman, Ian M. ;
Li, Hui-Chun ;
Briggs, Scott D. .
GENES & DEVELOPMENT, 2007, 21 (16) :2018-2029
[7]   Nonprocessive methylation by Dot1 leads to functional redundancy of histone H3K79 methylation states [J].
Frederiks, Floor ;
Tzouros, Manuel ;
Oudgenoeg, Gideon ;
van Welsem, Tibor ;
Fornerod, Maarten ;
Krijgsveld, Jeroen ;
van Leeuwen, Fred .
NATURE STRUCTURAL & MOLECULAR BIOLOGY, 2008, 15 (06) :550-557
[8]   The DNA damage checkpoint response requires histone H2B ubiquitination by Rad6-Bre1 and H3 methylation by Dot1 [J].
Giannattasio, M ;
Lazzaro, F ;
Plevani, P ;
Falconi, MM .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2005, 280 (11) :9879-9886
[9]   The nuclear receptor homologue Ftz-F1 and the homeodomain protein Ftz are mutually dependent cofactors [J].
Guichet, A ;
Copeland, JWR ;
Erdelyi, M ;
Hlousek, D ;
Zavorszky, P ;
Ho, J ;
Brown, S ;
PercivalSmith, A ;
Krause, HM ;
Ephrussi, A .
NATURE, 1997, 385 (6616) :548-552
[10]   Trans-tail histone modifications:: wedge or bridge? [J].
Henry, KW ;
Berger, SL .
NATURE STRUCTURAL BIOLOGY, 2002, 9 (08) :565-566