Fujita Naoyuki, Watanabe Sugiko, Ichimura Takaya, Tsuruzoe Shu, Shinkai Yoichi, Tachibana Makoto, Chiba Tsutomu, Nakao Mitsuyoshi
Department of Regeneration Medicine, Institute of Molecular Embryology and Genetics, Kumamoto University, 2-2-1 Honjo, Kumamoto 860-0811, Japan.
J Biol Chem. 2003 Jun 27;278(26):24132-8. doi: 10.1074/jbc.M302283200. Epub 2003 Apr 23.
Cytosine methylation and posttranslational modifications of the amino termini of the core histones in the nucleosome provide epigenetic codes for genome regulation. In the nucleus, not only is the DNA methylated, but the methylated DNA is also interpreted by methyl-CpG binding domain (MBD) proteins. MBD1 possesses an MBD involved in mediating DNA methylation-dependent transcriptional repression. The MBD of MBD1 binds a symmetrically methylated CpG sequence, but the precise roles of this domain have not been investigated. In addition, little is understood about the state of histone modifications within MBD1-containing heterochromatin on methylated gene promoters. Here we show that histone H3 methylase Suv39h1 and the methyl lysine-binding protein HP1 directly interact with MBD of MBD1 in vitro and in cells. Suv39h1 was found to enhance MBD1-mediated transcriptional repression via MBD but not via the C-terminal transcriptional repression domain of MBD1. Furthermore, MBD1 links to histone deacetylases through Suv39h1, resulting in methylation and deacetylation of histones for gene inactivation. These data indicate that MBD1 may tether the Suv39h1-HP1 complex to methylated DNA regions, suggesting the presence of a pathway from DNA methylation to the modifications of histones for epigenetic gene regulation.
核小体中核心组蛋白氨基末端的胞嘧啶甲基化和翻译后修饰为基因组调控提供表观遗传密码。在细胞核中,不仅DNA会发生甲基化,而且甲基化的DNA还会被甲基化CpG结合域(MBD)蛋白解读。MBD1拥有一个参与介导DNA甲基化依赖性转录抑制的MBD。MBD1的MBD结合对称甲基化的CpG序列,但该结构域的确切作用尚未得到研究。此外,对于甲基化基因启动子上含MBD1的异染色质内组蛋白修饰的状态了解甚少。在这里,我们表明组蛋白H3甲基转移酶Suv39h1和甲基赖氨酸结合蛋白HP1在体外和细胞中直接与MBD1的MBD相互作用。发现Suv39h1通过MBD增强MBD1介导的转录抑制,但不通过MBD1的C末端转录抑制结构域。此外,MBD1通过Suv39h1与组蛋白去乙酰化酶相连,导致组蛋白甲基化和去乙酰化以实现基因失活。这些数据表明,MBD1可能将Suv39h1-HP1复合物连接到甲基化的DNA区域,提示存在一条从DNA甲基化到组蛋白修饰以进行表观遗传基因调控的途径。