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首页> 外文期刊>The Plant Cell >The Arabidopsis RNA-Directed DNA Methylation Argonautes Functionally Diverge Based on Their Expression and Interaction with Target Loci.
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The Arabidopsis RNA-Directed DNA Methylation Argonautes Functionally Diverge Based on Their Expression and Interaction with Target Loci.

机译:基于拟南芥RNA定向的DNA甲基化Argonautes在功能上有所不同,基于它们的表达以及与靶基因座的相互作用。

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摘要

Argonaute (AGO) effectors of RNA silencing bind small RNA (sRNA) molecules and mediate mRNA cleavage, translational repression, or epigenetic DNA modification. In many organisms, these targeting mechanisms are devolved to different products of AGO multigene families. To investigate the basis of AGO functional diversification, we characterized three closely related Arabidopsis thaliana AGOs (AGO4, AGO6, and AGO9) implicated in RNA-directed DNA methylation. All three AGOs bound 5' adenosine 24-nucleotide sRNAs, but each exhibited different preferences for sRNAs from different heterochromatin-associated loci. This difference was reduced when AGO6 and AGO9 were expressed from the AGO4 promoter, indicating that the functional diversification was partially due to differential expression of the corresponding genes. However, the AGO4-directed pattern of sRNA accumulation and DNA methylation was not fully recapitulated with AGO6 or AGO9 expressed from the AGO4 promoter. Here, we show that sRNA length and 5' nucleotide do not account for the observed functional diversification of these AGOs. Instead, the selectivity of sRNA binding is determined by the coincident expression of the AGO and sRNA-generating loci, and epigenetic modification is influenced by interactions between the AGO protein and the different target loci. These findings highlight the importance of tissue specificity and AGO-associated proteins in influencing epigenetic modifications.
机译:RNA沉默的Argonaute(AGO)效应子与小RNA(sRNA)分子结合并介导mRNA裂解,翻译抑制或表观遗传DNA修饰。在许多生物中,这些靶向机制被转移到AGO多基因家族的不同产品上。为了调查AGO功能多样化的基础,我们表征了涉及RNA定向DNA甲基化的三个紧密相关的拟南芥AGO(AGO4,AGO6和AGO9)。所有三个AGO都结合5'腺苷24核苷酸sRNA,但每个都表现出不同的异染色质相关基因座对sRNA的不同偏好。当从AGO4启动子表达AGO6和AGO9时,这种差异减小了,这表明功能多样化部分是由于相应基因的差异表达。但是,用AGO4启动子表达的AGO6或AGO9不能完全概括由AGO4指导的sRNA积累和DNA甲基化模式。在这里,我们显示sRNA长度和5'核苷酸不解释这些AGO的观察到的功能多样化。取而代之的是,sRNA结合的选择性取决于AGO和sRNA产生基因座的一致表达,而表观遗传修饰受AGO蛋白与不同靶基因座之间相互作用的影响。这些发现突出了组织特异性和与AGO相关的蛋白质在影响表观遗传修饰中的重要性。

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