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A structural-maintenance-of-chromosomes hinge domain-containing protein is required for RNA-directed DNA methylation

机译:RNA指导的DNA甲基化需要染色体结构的铰链结构域维护蛋白

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RNA-directed DNA methylation (RdDM) is a process in which dicer-generated small RNAs guide de novo cytosine methylation at the homologous DNA region(1,2). To identify components of the RdDM machinery important for Arabidopsis thaliana development, we targeted an enhancer active in meristems for methylation, which resulted in silencing of a downstream GFP reporter gene. This silencing system also features secondary siRNAs, which trigger methylation that spreads beyond the targeted enhancer region. A screen for mutants defective in meristem silencing and enhancer methylation retrieved six dms complementation groups, which included the known factors DRD1 (ref. 3; a SNF2-like chromatin-remodeling protein) and Pol IVb subunits(4,5). Additionally, we identified a previously unknown gene DMS3 (At3g49250), encoding a protein similar to the hinge-domain region of structural maintenance of chromosomes (SMC) proteins. This finding implicates a putative chromosome architectural protein that can potentially link nucleic acids(6) in facilitating an RNAi-mediated epigenetic modification involving secondary siRNAs and spreading of DNA methylation.
机译:RNA定向DNA甲基化(RdDM)是一个由切酶生成的小RNA指导同源DNA区域从头进行胞嘧啶甲基化的过程(1,2)。为了鉴定对拟南芥发育重要的RdDM机械的组成部分,我们针对了在分生组织中具有活性的增强子进行甲基化,从而使下游的GFP报告基因沉默。该沉默系统还具有二级siRNA,可触发甲基化,该甲基化会扩散到目标增强子区域之外。对分生组织沉默和增强子甲基化缺陷的突变体进行筛选,检索到六个dms互补组,其中包括已知因子DRD1(参考文献3; SNF2样染色质重塑蛋白)和Pol IVb亚基(4,5)。此外,我们鉴定了一个以前未知的基因DMS3(At3g49250),其编码的蛋白质类似于染色体结构维持(SMC)蛋白质的铰链区。这一发现暗示了一种推定的染色体结构蛋白,该蛋白可以潜在地连接核酸(6),以促进涉及次级siRNA和DNA甲基化扩散的RNAi介导的表观遗传修饰。

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