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嗜热栖热菌中Argonaute对基因表达的影响。

Effects of Argonaute on Gene Expression in Thermus thermophilus.

作者信息

Swarts Daan C, Koehorst Jasper J, Westra Edze R, Schaap Peter J, van der Oost John

机构信息

Laboratory of Microbiology, Wageningen University, Wageningen, The Netherlands.

Laboratory of Systems and Synthetic Biology, Wageningen University, Wageningen, The Netherlands.

出版信息

PLoS One. 2015 Apr 22;10(4):e0124880. doi: 10.1371/journal.pone.0124880. eCollection 2015.

Abstract

BACKGROUND

Eukaryotic Argonaute proteins mediate RNA-guided RNA interference, allowing both regulation of host gene expression and defense against invading mobile genetic elements. Recently, it has become evident that prokaryotic Argonaute homologs mediate DNA-guided DNA interference, and play a role in host defense. Argonaute of the bacterium Thermus thermophilus (TtAgo) targets invading plasmid DNA during and after transformation. Using small interfering DNA guides, TtAgo can cleave single and double stranded DNAs. Although TtAgo additionally has been demonstrated to cleave RNA targets complementary to its DNA guide in vitro, RNA targeting by TtAgo has not been demonstrated in vivo.

METHODS

To investigate if TtAgo also has the potential to control RNA levels, we analyzed RNA-seq data derived from cultures of four T. thermophilus strain HB27 variants: wild type, TtAgo knockout (Δago), and either strain transformed with a plasmid. Additionally we determined the effect of TtAgo on expression of plasmid-encoded RNA and plasmid DNA levels.

RESULTS

In the absence of exogenous DNA (plasmid), TtAgo presence or absence had no effect on gene expression levels. When plasmid DNA is present, TtAgo reduces plasmid DNA levels 4-fold, and a corresponding reduction of plasmid gene transcript levels was observed. We therefore conclude that TtAgo interferes with plasmid DNA, but not with plasmid-encoded RNA. Interestingly, TtAgo presence stimulates expression of specific endogenous genes, but only when exogenous plasmid DNA was present. Specifically, the presence of TtAgo directly or indirectly stimulates expression of CRISPR loci and associated genes, some of which are involved in CRISPR adaptation. This suggests that TtAgo-mediated interference with plasmid DNA stimulates CRISPR adaptation.

摘要

背景

真核生物的AGO蛋白介导RNA引导的RNA干扰,既能调控宿主基因表达,又能抵御入侵的移动遗传元件。最近,越来越明显的是,原核生物AGO同源物介导DNA引导的DNA干扰,并在宿主防御中发挥作用。嗜热栖热菌(TtAgo)的AGO在转化过程中和转化后靶向入侵的质粒DNA。利用小干扰DNA向导,TtAgo可以切割单链和双链DNA。尽管TtAgo在体外也被证明能切割与其DNA向导互补的RNA靶标,但TtAgo对RNA的靶向作用尚未在体内得到证实。

方法

为了研究TtAgo是否也有控制RNA水平的潜力,我们分析了来自嗜热栖热菌HB27菌株四个变体培养物的RNA测序数据:野生型、TtAgo基因敲除(Δago)以及用质粒转化的任一菌株。此外,我们还确定了TtAgo对质粒编码RNA表达和质粒DNA水平的影响。

结果

在没有外源DNA(质粒)的情况下,TtAgo的存在与否对基因表达水平没有影响。当存在质粒DNA时,TtAgo可使质粒DNA水平降低4倍,同时观察到质粒基因转录水平相应降低。因此,我们得出结论,TtAgo干扰质粒DNA,但不干扰质粒编码的RNA。有趣的是,只有当存在外源质粒DNA时,TtAgo的存在才会刺激特定内源基因的表达。具体而言,TtAgo的存在直接或间接刺激CRISPR位点及相关基因的表达,其中一些基因参与CRISPR适应。这表明TtAgo介导的对质粒DNA的干扰会刺激CRISPR适应。

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