The Sprott Center for Stem Cell Research, Regenerative Medicine Program, Ottawa Hospital Research Institute, Ottawa, ON, Canada K1H 8L6.
Proc Natl Acad Sci U S A. 2012 Nov 13;109(46):18845-50. doi: 10.1073/pnas.1213951109. Epub 2012 Oct 29.
Chromatin remodeling is essential for controlling the expression of genes during development. The histone-modifying enzyme G9a/KMT1C can act both as a coactivator and a corepressor of transcription. Here, we show that the dual function of G9a as a coactivator vs. a corepressor entails its association within two distinct protein complexes, one containing the coactivator Mediator and one containing the corepressor Jarid1a/KDM5A. Functionally, G9a is important in stabilizing the Mediator complex for gene activation, whereas its repressive function entails a coordinate action with the histone H3 lysine 4 (H3K4) demethylase Jarid1a for the maintenance of gene repression. The essential nature of cross-talk between the histone methyltransferase G9a and the demethylase Jarid1a is demonstrated on the embryonic E(y)-globin gene, where the concurrent introduction of repressive histone marks (dimethylated H3K9 and dimethylated H3K27) and removal of activating histone mark (trimethylated H3K4) is required for maintenance of gene silencing. Taken together with our previous demonstration of cross-talk between UTX and MLL2 to mediate activation of the adult β(maj)-globin gene, these data suggest a model where "active" and "repressive" cross-talk between histone-modifying enzymes coexist on the same multigene locus and play a crucial role in the precise control of developmentally regulated gene expression.
染色质重塑对于控制发育过程中基因的表达至关重要。组蛋白修饰酶 G9a/KMT1C 可以作为转录的共激活因子和核心抑制因子发挥作用。在这里,我们表明 G9a 作为共激活因子与核心抑制因子的双重功能需要其与两个不同的蛋白质复合物相关联,一个包含共激活因子 Mediator,另一个包含核心抑制因子 Jarid1a/KDM5A。在功能上,G9a 对于稳定 Mediator 复合物以激活基因很重要,而其抑制功能需要与组蛋白 H3 赖氨酸 4(H3K4)去甲基酶 Jarid1a 协调作用,以维持基因抑制。组蛋白甲基转移酶 G9a 和去甲基酶 Jarid1a 之间的交叉对话对于胚胎 E(y)-球蛋白基因的重要性是通过引入抑制性组蛋白标记(二甲基化 H3K9 和二甲基化 H3K27)和去除激活性组蛋白标记(三甲基化 H3K4)来维持基因沉默来证明的。结合我们之前证明的 UTX 和 MLL2 之间的交叉对话来介导成人 β(maj)-球蛋白基因的激活,这些数据表明了一个模型,即“活性”和“抑制”之间的交叉对话组蛋白修饰酶在同一个多基因座上共存,并在精确控制发育调节基因表达中发挥关键作用。