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首页> 外文期刊>Genome Biology >Comparative epigenomics in the Brassicaceae reveals two evolutionarily conserved modes of PRC2-mediated gene regulation
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Comparative epigenomics in the Brassicaceae reveals two evolutionarily conserved modes of PRC2-mediated gene regulation

机译:十字花科的比较基因组学揭示了PRC2介导的基因调控的两种进化保守模式。

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Background: Adenosine to inosine (A-to-I) RNA editing has been shown to be an essential event that plays a significant role in neuronal function, as well as innate immunity, in mammals. It requires a structure that is largely double-stranded for catalysis but little is known about what determines editing efficiency and specificity in vivo. We have previously shown that some editing sites require adjacent long stem loop structures acting as editing inducer elements (EIEs) for efficient editing. Results: The glutamate receptor subunit A2 is edited at the Q/R site in almost 100% of all transcripts. We show that efficient editing at the Q/R site requires an EIE in the downstream intron, separated by an internal loop. Also, other efficiently edited sites are flanked by conserved, highly structured EIEs and we propose that this is a general requisite for efficient editing, while sites with low levels of editing lack EIEs. This phenomenon is not limited to mRNA, as non-coding primary miRNAs also use EIEs to recruit ADAR to specific sites. Conclusions: We propose a model where two regions of dsRNA are required for efficient editing: first, an RNA stem that recruits ADAR and increases the local concentration of the enzyme, then a shorter, less stable duplex that is ideal for efficient and specific catalysis. This discovery changes the way we define and determine a substrate for A-to-I editing. This will be important in the discovery of novel editing sites, as well as explaining cases of altered editing in relation to disease.
机译:背景:腺苷到肌苷(A到I)的RNA编辑已被证明是必不可少的事件,在哺乳动物的神经元功能和先天免疫中起着重要作用。它需要一种在很大程度上为催化双链的结构,但是对于决定体内编辑效率和特异性的知之甚少。先前我们已经表明,某些编辑位点需要相邻的长茎环结构充当有效的编辑诱导元素(EIE)。结果:谷氨酸受体亚基A2在所有转录本的Q / R位点被编辑。我们表明,在Q / R位置进行有效编辑需要下游内含子中的EIE,该内含子由内部循环分隔。此外,其他有效编辑的站点两侧是保守的,结构化的EIE,我们建议这是进行有效编辑的一般要求,而编辑水平较低的站点则缺少EIE。这种现象不仅限于mRNA,因为非编码的初级miRNA也使用EIE将ADAR募集到特定位点。结论:我们提出了一个模型,其中有效编辑需要dsRNA的两个区域:首先是募集ADAR并增加酶局部浓度的RNA茎,然后是较短,不稳定的双链体,是高效且特异催化的理想选择。这一发现改变了我们定义和确定A-to-I编辑的基础的方式。这对于发现新颖的编辑位点以及解释与疾病有关的编辑改变的案例非常重要。

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