首页> 外文期刊>The New Phytologist >SET DOMAIN GROUP 708, a histone H3 lysine 36-specific methyltransferase, controls flowering time in rice (Oryza sativa)
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SET DOMAIN GROUP 708, a histone H3 lysine 36-specific methyltransferase, controls flowering time in rice (Oryza sativa)

机译:SET DOMAIN GROUP 708,一种组蛋白H3赖氨酸36特异性甲基转移酶,控制水稻(Oryza sativa)的开花时间

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As a key epigenetic modification, the methylation of histone H3 lysine 36 (H3K36) modulates chromatin structure and is involved in diverse biological processes. To better understand the language of H3K36 methylation in rice (Oryza sativa), we chose potential histone methylation enzymes for functional exploration. In particular, we characterized rice SET DOMAIN GROUP 708 (SDG708) as an H3K36-specific methyltransferase possessing the ability to deposit up to three methyl groups on H3K36. Compared with the wild-type, SDG708-knockdown rice mutants displayed a late-flowering phenotype under both long-day and short-day conditions because of the down-regulation of the key flowering regulatory genes Heading date 3a (Hd3a), RICE FLOWERING LOCUS T1 (RFT1), and Early heading date 1 (Ehd1). Chromatin immunoprecipitation experiments indicated that H3K36me1, H3K36me2, and H3K36me3 levels were reduced at these loci in SDG708-deficient plants. More importantly, SDG708 was able to directly target and effect H3K36 methylation on specific flowering genes. In fact, knockdown of SDG708 led to misexpression of a set of functional genes and a genome-wide decrease in H3K36me1/2/3 levels during the early growth stages of rice. SDG708 is a methyltransferase that catalyses genome-wide deposition of all three methyl groups on H3K36 and is involved in many biological processes in addition to flowering promotion.
机译:作为关键的表观遗传修饰,组蛋白H3赖氨酸36(H3K36)的甲基化可调节染色质结构,并参与多种生物学过程。为了更好地理解水稻(Oryza sativa)中H3K36甲基化的语言,我们选择了潜在的组蛋白甲基化酶进行功能探索。特别是,我们将水稻SET DOMAIN GROUP 708(SDG708)表征为H3K36特异性甲基转移酶,该酶具有在H3K36上沉积多达三个甲基的能力。与野生型相比,SDG708敲低水稻突变体在长日和短日条件下均表现出晚开花表型,这是由于关键开花调节基因Heading date 3a(Hd3a),RICE FLOWERING LOCUS的下调T1(RFT1)和早期标题日期1(Ehd1)。染色质免疫沉淀实验表明,在SDG708缺失植物中,这些位点的H3K36me1,H3K36me2和H3K36me3水平降低。更重要的是,SDG708能够直接靶向并影响特定开花基因上的H3K36甲基化。实际上,SDG708的敲低导致水稻早期生长阶段中一组功能基因的错误表达以及H3K36me1 / 2/3水平的全基因组水平降低。 SDG708是一种甲基转移酶,可催化H3K36上所有三个甲基的全基因组沉积,除促进开花外,还参与许多生物学过程。

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