首页> 美国卫生研究院文献>Plant Physiology >Focus on Chromatin/Epigenetics: MORF-RELATED GENE702 a Reader Protein of Trimethylated Histone H3 Lysine 4 and Histone H3 Lysine 36 Is Involved in Brassinosteroid-Regulated Growth and Flowering Time Control in Rice
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Focus on Chromatin/Epigenetics: MORF-RELATED GENE702 a Reader Protein of Trimethylated Histone H3 Lysine 4 and Histone H3 Lysine 36 Is Involved in Brassinosteroid-Regulated Growth and Flowering Time Control in Rice

机译:专注于染色质/表观遗传学:MORF相关基因GENE702是三甲基化组蛋白H3赖氨酸4和组蛋白H3赖氨酸36的阅读器蛋白参与油菜素类固醇调节水稻的生长和开花时间控制

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摘要

The methylation of histone H3 lysine 36 (H3K36) plays critical roles in brassinosteroid ()-related processes and is involved in controlling flowering time in rice (Oryza sativa). Although enzymes that catalyze this methylation reaction have been described, little is known about the recognition mechanisms to decipher H3K36 methylation information in rice. In this study, biochemical characterizations showed that MORF-RELATED GENE702 (MRG702) binds to trimethylated H3K4 and H3K36 (H3K4me3 and H3K36me3) in vitro. Similar to the loss-of-function mutants of the rice H3K36 methyltransferase gene SET DOMAIN GROUP725 (SDG725), the MRG702 knockdown mutants displayed typical -deficient mutant and late-flowering phenotypes. Gene transcription analyses showed that MRG702 knockdown resulted in the down-regulation of -related genes, including DWARF11, BRASSINOSTEROD INSENSITIVE1, and BRASSINOSTEROID UPREGULATED1, and several flowering genes, including Early heading date1 (Ehd1), Ehd2, Ehd3, OsMADS50, Heading date 3a, and RICE FLOWERING LOCUS T1. A binding analysis showed that MRG702 directly binds to the chromatin at target gene loci. This binding is dependent on the level of trimethylated H3K36, which is mediated by SDG725. Together, our results demonstrate that MRG702 acts as a reader protein of H3K4me3 and H3K36me3 and deciphers the H3K36 methylation information set by SDG725. Therefore, the role of MRG702 in the pathway and in controlling flowering time in rice is to function as a reader protein to decipher methylation information.
机译:组蛋白H3赖氨酸36(H3K36)的甲基化在油菜素类固醇()相关过程中起关键作用,并参与控制水稻(Oryza sativa)的开花时间。尽管已经描述了催化该甲基化反应的酶,但对于破译水稻中H3K36甲基化信息的识别机制知之甚少。在这项研究中,生化特征表明,与MORF相关的GENE702(MRG702)在体外与三甲基化的H3K4和H3K36(H3K4me3和H3K36me3)结合。与水稻H3K36甲基转移酶基因SET DOMAIN GROUP725(SDG725)的功能丧失突变体相似,MRG702敲低突变体表现出典型的缺陷型和晚开花表型。基因转录分析显示,MRG702敲低导致相关基因的下调,包括DWARF11,BRASINOSTEROD INSENSITIVE1和BRASSINOSTEROID UPREGULATED1,以及几个开花基因,包括Early heading date1(Ehd1),Ehd2,Ehd3,OsMADS50,Heading date 3a ,以及RICE FLOWERING LOCUS T1。结合分析表明,MRG702直接与靶基因位点的染色质结合。这种结合取决于由SDG725介导的三甲基化H3K36的水平。在一起,我们的结果表明MRG702充当H3K4me3和H3K36me3的阅读器蛋白,并解密SDG725设置的H3K36甲基化信息。因此,MRG702在该途径中和在控制水稻开花时间中的作用是作为阅读器蛋白质来破译甲基化信息。

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