Yamaguchi Nobutoshi
Division of Biological Science, Graduate School of Science and Technology, Nara Institute of Science and Technology, Ikoma, Japan.
Front Plant Sci. 2021 Jun 17;12:687416. doi: 10.3389/fpls.2021.687416. eCollection 2021.
Trimethylation of histone H3 lysine 27 (H3K27me3) is a highly conserved repressive histone modification that signifies transcriptional repression in plants and animals. In , the demethylation of H3K27 is regulated by a group of () genes. Transcription of genes is spatiotemporally regulated during plant development and in response to the environment. Once genes are transcribed, recruitment of JMJs to target genes, followed by demethylation of H3K27, is critically important for the precise control of gene expression. JMJs function synergistically and antagonistically with transcription factors and/or other epigenetic regulators on chromatin. This review summarizes the latest advances in our understanding of H3K27me3 demethylases that provide robust and flexible epigenetic regulation of gene expression to direct appropriate development and environmental responses in plants.
组蛋白H3赖氨酸27(H3K27me3)的三甲基化是一种高度保守的抑制性组蛋白修饰,它在植物和动物中代表转录抑制。在植物中,H3K27的去甲基化由一组JMJ(Jumonji C)基因调控。JMJ基因的转录在植物发育过程中以及对环境的响应中受到时空调节。一旦JMJ基因被转录,JMJ蛋白被招募到靶基因上,随后H3K27去甲基化,这对于基因表达的精确控制至关重要。JMJ蛋白与染色质上的转录因子和/或其他表观遗传调节因子协同和拮抗发挥作用。本综述总结了我们对H3K27me3去甲基酶理解的最新进展,这些去甲基酶为基因表达提供强大而灵活的表观遗传调控,以指导植物的适当发育和环境响应。