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REPRESSOR OF SILENCING5 Encodes a Member of the Small Heat Shock Protein Family and Is Required for DNA Demethylation in Arabidopsis

机译:SILENCING5的阻遏物编码小的热激蛋白家族成员,是拟南芥中DNA脱甲基化所必需的

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In Arabidopsis thaliana, active DNA demethylation is initiated by the DNA glycosylase REPRESSOR OF SILENCING1 (ROS1) and its paralogs DEMETER, DEMETER-LIKE2 (DML2), and DML3. How these demethylation enzymes are regulated, however, is poorly understood. Here, using a transgenic Arabidopsis line harboring the stress-inducible RESPONSIVE TO DEHYDRATION29A (RD29A) promoter-LUCIFERASE (LUC) reporter gene and the cauliflower mosaic virus 35S promoter (35S)-NEOMYCIN PHOSPHOTRANSFERASE II (NPTII) antibiotic resistance marker gene, we characterize a ROS locus, ROS5, that encodes a protein in the small heat shock protein family. ROS5 mutations lead to the silencing of the 35S-NPTII transgene due to DNA hypermethylation but do not affect the expression of the RD29A-LUC transgene. ROS5 physically interacts with the histone acetyltransferase ROS4/INCREASED DNA METHYLATION1 (IDM1) and is required to prevent the DNA hypermethylation of some genes that are also regulated by ROS1 and IDM1. We propose that ROS5 regulates DNA demethylation by interacting with IDM1, thereby creating a chromatin environment that facilitates the binding of ROS1 to erase DNA methylation.
机译:在拟南芥中,活性DNA脱甲基化是由SILENCING1(ROS1)及其旁系同源物DEMETER,DEMETER-LIKE2(DML2)和DML3的DNA糖基化酶阻遏物引发的。然而,人们对这些脱甲基酶的调控方式知之甚少。在这里,我们使用转基因拟南芥品系,该品系具有胁迫诱导性的对脱水29A(RD29A)启动子-LUCIFERASE(LUC)报告基因和花椰菜花叶病毒35S启动子(35S)-NEOMYCIN PHOSPHOTRANSFERASE II(NPTII)抗生素抗性标记基因, ROS基因座ROS5,它编码小的热激蛋白家族中的一种蛋白。 ROS5突变导致DNA高甲基化导致35S-NPTII转基因沉默,但不影响RD29A-LUC转基因的表达。 ROS5与组蛋白乙酰转移酶ROS4 /增加的DNA甲基化1(IDM1)发生物理相互作用,是防止某些也受ROS1和IDM1调控的基因的DNA甲基化所必需的。我们提出,ROS5通过与IDM1相互作用来调节DNA脱甲基,从而创造一种染色质环境,促进ROS1结合以消除DNA甲基化。

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