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拟南芥AGO4在反向重复序列引发的RNA指导的DNA甲基化中的作用

Role of Arabidopsis ARGONAUTE4 in RNA-directed DNA methylation triggered by inverted repeats.

作者信息

Zilberman Daniel, Cao Xiaofeng, Johansen Lisa K, Xie Zhixin, Carrington James C, Jacobsen Steven E

机构信息

Department of Molecular, Cell and Developmental Biology, University of California, Los Angeles, Los Angeles, CA 90095, USA.

出版信息

Curr Biol. 2004 Jul 13;14(13):1214-20. doi: 10.1016/j.cub.2004.06.055.

Abstract

In a number of organisms, transgenes containing transcribed inverted repeats (IRs) that produce hairpin RNA can trigger RNA-mediated silencing, which is associated with 21-24 nucleotide small interfering RNAs (siRNAs). In plants, IR-driven RNA silencing also causes extensive cytosine methylation of homologous DNA in both the transgene "trigger" and any other homologous DNA sequences--"targets". Endogenous genomic sequences, including transposable elements and repeated elements, are also subject to RNA-mediated silencing. The RNA silencing gene ARGONAUTE4 (AGO4) is required for maintenance of DNA methylation at several endogenous loci and for the establishment of methylation at the FWA gene. Here, we show that mutation of AGO4 substantially reduces the maintenance of DNA methylation triggered by IR transgenes, but AGO4 loss-of-function does not block the initiation of DNA methylation by IRs. AGO4 primarily affects non-CG methylation of the target sequences, while the IR trigger sequences lose methylation in all sequence contexts. Finally, we find that AGO4 and the DRM methyltransferase genes are required for maintenance of siRNAs at a subset of endogenous sequences, but AGO4 is not required for the accumulation of IR-induced siRNAs or a number of endogenous siRNAs, suggesting that AGO4 may function downstream of siRNA production.

摘要

在许多生物体中,含有能产生发夹RNA的转录反向重复序列(IRs)的转基因可触发RNA介导的沉默,这与21 - 24个核苷酸的小干扰RNA(siRNAs)有关。在植物中,IR驱动的RNA沉默还会导致转基因“触发子”和任何其他同源DNA序列——“靶标”中同源DNA的广泛胞嘧啶甲基化。包括转座元件和重复元件在内的内源基因组序列也会受到RNA介导的沉默作用。RNA沉默基因ARGONAUTE4(AGO4)是维持几个内源位点的DNA甲基化以及在FWA基因上建立甲基化所必需的。在此,我们表明AGO4的突变会显著降低由IR转基因触发的DNA甲基化的维持,但AGO4功能丧失并不会阻止IR引发的DNA甲基化的起始。AGO4主要影响靶序列的非CG甲基化,而IR触发序列在所有序列背景下都会失去甲基化。最后,我们发现AGO4和DRM甲基转移酶基因是维持内源序列子集中siRNAs所必需的,但AGO4对于IR诱导的siRNAs或许多内源siRNAs的积累并非必需,这表明AGO4可能在siRNA产生的下游发挥作用。

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