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DNA demethylation: a lesson from the garden

机译:DNA去甲基化:从花园中汲取的教训

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Gene silencing by DNA methylation is well documented and known to be essential for various biological phenomena in many organisms. In contrast, the processes that convert the silent state of a gene whose DNA is methylated and predicted to form facultative heterochromatin to the actively transcribed state remain elusive. In Arabidopsis, recent studies have shown that the DNA glycosylases DEMETER (DME) and REPRESSOR OF SILENCING1 (ROS1) participate in DNA demethylation. DME is necessary for genomic imprinting in the endosperm, while ROS1 is involved in pruning DNA methylation patterns in transposons and genic regions of vegetative tissues. These findings provide us with molecular clues for understanding the underlying mechanisms of DNA demethylation and gene activation. In this review, we will consider and discuss the processes of controlling gene activation through DNA demethylation, which are predicted to include the recognition of target sequences, DNA demethylation, the transformation of the chromatin to the active state, and transcription. Many of these processes remain poorly understood at this stage. Communicated by P. Shaw
机译:DNA甲基化导致的基因沉默已得到充分证明,并且已知对于许多生物中的各种生物学现象必不可少。相反,将其DNA被甲基化并预测形成兼性异染色质的基因的沉默状态转换为活性转录状态的过程仍然难以实现。在拟南芥中,最近的研究表明,DNA糖基化酶DEMETER(DME)和SILENCING1阻遏物(ROS1)参与DNA脱甲基。 DME对于胚乳中的基因组印迹是必需的,而ROS1参与修剪转座子和营养组织的基因区域中的DNA甲基化模式。这些发现为我们提供了分子线索,以了解DNA脱甲基和基因激活的潜在机制。在这篇综述中,我们将考虑和讨论通过DNA去甲基化控制基因激活的过程,该过程预计包括目标序列的识别,DNA去甲基化,染色质转化为活性状态以及转录。在此阶段,其中许多过程仍知之甚少。与P. Shaw沟通

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  • 来源
    《Chromosoma》 |2009年第1期|p.37-41|共5页
  • 作者

    Yoko Ikeda; Tetsu Kinoshita;

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  • 入库时间 2022-08-18 01:52:05

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