Histone methyltransferases G9a and GLP form heteromeric complexes and are both crucial for methylation of euchromatin at H3-K9

被引:634
作者
Tachibana, M
Ueda, J
Fukuda, M
Takeda, N
Ohta, T
Iwanari, H
Sakihama, T
Kodama, T
Hamakubo, T
Shinkai, Y [1 ]
机构
[1] Kyoto Univ, Inst Virus Res, Expt Res Ctr Infect Dis, Sakyo Ku, Kyoto 6068507, Japan
[2] Kumamoto Univ, Ctr Anim Resources & Dev, Kumamoto 8600811, Japan
[3] Natl Canc Ctr, Res Inst, Ctr Med Gen, Tokyo 1040045, Japan
[4] Univ Tokyo, Adv Sci & Technol Res Ctr, Lab Syst Biol & Med, Tokyo 1538904, Japan
关键词
histone; methylation; G9a; GLP;
D O I
10.1101/gad.1284005
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
Histone H3 Lys 9 (H3-K9) methylation is a crucial epigenetic mark for transcriptional silencing. G9a is the major mammalian H3-K9 methyltransferase that targets euchromatic regions and is essential for murine embryogenesis. There is a single G9a-related methyltransferase in mammals, called GLP/Eu-HMTase1. Here we show that GLP is also important for H3-K9 methylation of mouse euchromatin. GLP-deficiency led to embryonic lethality, a severe reduction of H3-K9 mono- and dimethylation, the induction of Mage-a gene expression, and HP1 relocalization in embryonic stem cells, all of which were phenotypes of G9a-deficiency. Furthermore, we show that G9a and GLP formed a stoichiometric heteromeric complex in a wide variety of cell types. Biochemical analyses revealed that formation of the G9a/GLP complex was dependent on their enzymatic SET domains. Taken together, our new findings revealed that G9a and GLP cooperatively exert H3-K9 methyltransferase function in vivo, likely through the formation of higher-order heteromeric complexes.
引用
收藏
页码:815 / 826
页数:12
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