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Four putative SWI2/SNF2 chromatin remodelers have dual roles in regulating DNA methylation in Arabidopsis

机译:四个推定的SWI2 / SNF2染色质重塑剂在调节拟南芥DNA甲基化中具有双重作用

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DNA methylation is a conserved epigenetic mark that is critical for many biological processes in plants and mammals. In Arabidopsis, the antagonistic activities of RNA-directed DNA methylation (RdDM) and ROS1-dependent active DNA demethylation are key for the dynamic regulation of locus-specific DNA methylation. However, the molecular factors that coordinate RdDM and active demethylation are largely unknown. Here we report that CLSY4 and its three paralogous SWI2/SNF2-type chromatin-remodeling proteins function in both RdDM and DNA demethylation in Arabidopsis. We initially identified CLSY4 in a genetic screen for DNA demethylation factors and subsequently demonstrated that it also is important in RdDM. Comprehensive genetic analyses using single and high order mutants of CLSY family proteins revealed their roles as double agents in the balance between methylation and demethylation reactions. The four CLSY proteins collectively are necessary for the canonical RdDM pathway; at the same time, each CLSY likely mediates DNA demethylation at specific loci where DNA methylation depends on RdDM. These results indicate that the four chromatin-remodeling proteins have dual functions in regulating genomic DNA methylation, and thus provide new insights into the dynamic regulation of DNA methylation in a model multicellular eukaryotic organism.
机译:DNA甲基化是一个保守的表观遗传标记,对于植物和哺乳动物的许多生物过程至关重要。在拟南芥中,RNA定向DNA甲基化(RdDM)和ROS1依赖性活性DNA去甲基化的拮抗活性是动态调节基因座特异性DNA甲基化的关键。然而,协调RdDM和活性去甲基化的分子因素在很大程度上是未知的。在这里我们报告CLSY4及其三个同源SWI2 / SNF2型染色质重塑蛋白在RdDM和拟南芥中的DNA脱甲基化中起作用。我们最初在DNA脱甲基因子的遗传筛选中鉴定了CLSY4,随后证明了它在RdDM中也很重要。使用CLSY家族蛋白的单突变体和高阶突变体进行的全面遗传分析表明,它们在甲基化和脱甲基反应之间的平衡中作为双重试剂发挥作用。四种CLSY蛋白共同是典型的RdDM途径所必需的。同时,每个CLSY可能在特定位点介导DNA脱甲基,而DNA甲基化取决于RdDM。这些结果表明,四种染色质重塑蛋白在调节基因组DNA甲基化中具有双重功能,从而为模型多细胞真核生物中DNA甲基化的动态调节提供了新的见解。

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