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RNA 指导的 DNA 甲基化所需的非典型 RNA 聚合酶亚基。

Atypical RNA polymerase subunits required for RNA-directed DNA methylation.

作者信息

Kanno Tatsuo, Huettel Bruno, Mette M Florian, Aufsatz Werner, Jaligot Estelle, Daxinger Lucia, Kreil David P, Matzke Marjori, Matzke Antonius J M

机构信息

Gregor Mendel Institute of Molecular Plant Biology, Austrian Academy of Sciences, UZA2, Pharmazie Zentrum, Althanstrasse 14/2D-541, A-1090 Vienna, Austria.

出版信息

Nat Genet. 2005 Jul;37(7):761-5. doi: 10.1038/ng1580. Epub 2005 May 29.

Abstract

RNA-directed DNA methylation, one of several RNA interference-mediated pathways in the nucleus, has been documented in plants and in human cells. Despite progress in identifying the DNA methyltransferases, histone-modifying enzymes and RNA interference proteins needed for RNA-directed DNA methylation, the mechanism remains incompletely understood. We screened for mutants defective in RNA-directed DNA methylation and silencing of a transgene promoter in Arabidopsis thaliana and identified three drd complementation groups. DRD1 is a SNF2-like protein required for RNA-directed de novo methylation. We report here that DRD2 and DRD3 correspond to the second-largest subunit and largest subunit, respectively, of a fourth class of DNA-dependent RNA polymerase (polymerase IV) that is unique to plants. DRD3 is a functionally diversified homolog of NRPD1a or SDE4, identified in a separate screen for mutants defective in post-transcriptional gene silencing. The identical DNA methylation patterns observed in all three drd mutants suggest that DRD proteins cooperate to create a substrate for RNA-directed de novo methylation.

摘要

RNA 介导的 DNA 甲基化是细胞核中几种 RNA 干扰介导途径之一,已在植物和人类细胞中得到证实。尽管在鉴定 RNA 介导的 DNA 甲基化所需的 DNA 甲基转移酶、组蛋白修饰酶和 RNA 干扰蛋白方面取得了进展,但该机制仍未完全了解。我们在拟南芥中筛选了 RNA 介导的 DNA 甲基化和转基因启动子沉默缺陷的突变体,并鉴定出三个 drd 互补组。DRD1 是 RNA 介导的从头甲基化所需的一种 SNF2 样蛋白。我们在此报告,DRD2 和 DRD3 分别对应于植物特有的第四类依赖 DNA 的 RNA 聚合酶(聚合酶 IV)的第二大亚基和第一大亚基。DRD3 是 NRPD1a 或 SDE4 的功能多样化同源物,在转录后基因沉默缺陷突变体的单独筛选中鉴定出来。在所有三个 drd 突变体中观察到的相同 DNA 甲基化模式表明,DRD 蛋白协同作用以产生 RNA 介导的从头甲基化的底物。

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