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首页> 外文期刊>Scientific reports. >The cytosolic Fe-S cluster assembly component MET18 is required for the full enzymatic activity of ROS1 in active DNA demethylation
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The cytosolic Fe-S cluster assembly component MET18 is required for the full enzymatic activity of ROS1 in active DNA demethylation

机译:在活性DNA去甲基化中ROS1的全酶活性需要细胞溶胶Fe-S簇组件组件MAT18

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DNA methylation patterns in plants are dynamically regulated by DNA methylation and active DNA demethylation in response to both environmental changes and development of plant. Beginning with the removal of methylated cytosine by ROS1/DME family of 5-methylcytosine DNA glycosylases, active DNA demethylation in plants occurs through base excision repair. So far, many components involved in active DNA demethylation remain undiscovered. Through a forward genetic screening of Arabidopsis mutants showing DNA hypermethylation at the EPF2 promoter region, we identified the conserved iron-sulfur cluster assembly protein MET18. MET18 dysfunction caused DNA hypermethylation at more than 1000 loci as well as the silencing of reporter genes and some endogenous genes. MET18 can directly interact with ROS1 in vitro and in vivo. ROS1 activity was reduced in the met18 mutant plants and point mutation in the conserved Fe-S cluster binding motif of ROS1 disrupted its biological function. Interestingly, a large number of DNA hypomethylated loci, especially in the CHH context, were identified from the met18 mutants and most of the hypo-DMRs were from TE regions. Our results suggest that MET18 can regulate both active DNA demethylation and DNA methylation pathways in Arabidopsis.
机译:植物中的DNA甲基化模式通过DNA甲基化和活性DNA去甲基化动态调节,响应于植物的环境变化和发育。从ROS1 / DME系列5-甲基胞嘧啶DNA糖基酶的ROS1 / DME系列的除去甲基化胞嘧啶开始,通过基础切除修复发生植物中的活性DNA去甲基化。到目前为止,有活性DNA去甲基化的许多组分仍未被发现。通过在EPF2启动子区显示DNA高甲基化的拟南芥突变体的前进遗传筛查,我们鉴定了保守的铁 - 硫簇组装蛋白MET18。 MET18功能障碍在超过1000个基因座上引起DNA高甲基化以及报告基因的沉默和一些内源基因。 MET18可以在体外和体内直接与ROS1相互作用。在MET18突变植物中降低了ROS1活性,并且ROS1的保守FE-S簇结合基序中的点突变破坏了其生物学功能。有趣的是,从Met18突变体鉴定大量DNA甲基化基因座,尤其是在CHH语境中,并且大多数Hymo-DMR都来自TE区域。我们的研究结果表明,MET18可以调节拟南芥中活性DNA去甲基化和DNA甲基化途径。

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