Shanghai Center for Plant Stress Biology, National Key Laboratory of Plant Molecular Genetics, Center for Excellence in Molecular Plant Sciences, Chinese Academy of Sciences, Shanghai, China.
University of Chinese Academy of Sciences, Beijing, China.
Nat Commun. 2021 Jun 7;12(1):3367. doi: 10.1038/s41467-021-23637-4.
In plants, RNA-directed DNA methylation (RdDM) is a well-known de novo DNA methylation pathway that involves two plant-specific RNA polymerases, Pol IV and Pol V. In this study, we discovered and characterized an RdDM factor, RDM15. Through DNA methylome and genome-wide siRNA analyses, we show that RDM15 is required for RdDM-dependent DNA methylation and siRNA accumulation at a subset of RdDM target loci. We show that RDM15 contributes to Pol V-dependent downstream siRNA accumulation and interacts with NRPE3B, a subunit specific to Pol V. We also show that the C-terminal tudor domain of RDM15 specifically recognizes the histone 3 lysine 4 monomethylation (H3K4me1) mark. Structure analysis of RDM15 in complex with the H3K4me1 peptide showed that the RDM15 tudor domain specifically recognizes the monomethyllysine through an aromatic cage and a specific hydrogen bonding network; this chemical feature-based recognition mechanism differs from all previously reported monomethyllysine recognition mechanisms. RDM15 and H3K4me1 have similar genome-wide distribution patterns at RDM15-dependent RdDM target loci, establishing a link between H3K4me1 and RDM15-mediated RdDM in vivo. In summary, we have identified and characterized a histone H3K4me1-specific binding protein as an RdDM component, and structural analysis of RDM15 revealed a chemical feature-based lower methyllysine recognition mechanism.
在植物中,RNA 指导的 DNA 甲基化(RdDM)是一种众所周知的从头 DNA 甲基化途径,涉及两种植物特异性 RNA 聚合酶,Pol IV 和 Pol V。在这项研究中,我们发现并鉴定了一个 RdDM 因子,RDM15。通过 DNA 甲基化组和全基因组 siRNA 分析,我们表明 RDM15 是 RdDM 依赖的 DNA 甲基化和 siRNA 在一组 RdDM 靶标基因座上积累所必需的。我们表明 RDM15 有助于 Pol V 依赖的下游 siRNA 积累,并与 NRPE3B 相互作用,NRPE3B 是 Pol V 特有的亚基。我们还表明,RDM15 的 C 端 tudor 结构域特异性识别组蛋白 3 赖氨酸 4 单甲基化(H3K4me1)标记。RDM15 与 H3K4me1 肽复合物的结构分析表明,RDM15 的 tudor 结构域通过芳香族笼和特定的氢键网络特异性识别单甲基赖氨酸;这种基于化学特征的识别机制与所有先前报道的单甲基赖氨酸识别机制不同。RDM15 和 H3K4me1 在 RDM15 依赖的 RdDM 靶标基因座上具有相似的全基因组分布模式,在体内建立了 H3K4me1 和 RDM15 介导的 RdDM 之间的联系。总之,我们已经鉴定并鉴定了一种组蛋白 H3K4me1 特异性结合蛋白作为 RdDM 成分,并且 RDM15 的结构分析揭示了一种基于化学特征的低甲基赖氨酸识别机制。