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Two RNA editing sites with cis-acting elements of moderate sequence identity are recognized by an identical site-recognition protein in tobacco chloroplasts

机译:烟草叶绿体中相同的位点识别蛋白可识别具有中等序列同一性的顺式作用元件的两个RNA编辑位点

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摘要

The chloroplast genome of higher plants contains 20–40 C-to-U RNA editing sites, whose number and locations are diversified among plant species. Biochemical analyses using in vitro RNA editing systems with chloroplast extracts have suggested that there is one-to-one recognition between proteinous site recognition factors and their respective RNA editing sites, but their rigidness and generality are still unsettled. In this study, we addressed this question with the aid of an in vitro RNA editing system from tobacco chloroplast extracts and with UV-crosslinking experiments. We found that the ndhB-9 and ndhF-1 editing sites of tobacco chloroplast transcripts are both bound by the site-specific trans-acting factors of 95 kDa. Cross-competition experiments between ndhB-9 and ndhF-1 RNAs demonstrated that the 95 kDa proteins specifically binding to the ndhB-9 and ndhF-1 sites are the identical protein. The binding regions of the 95 kDa protein on the ndhB-9 and ndhF-1 transcripts showed 60% identity in nucleotide sequence. This is the first biochemical demonstration that a site recognition factor of chloroplast RNA editing recognizes plural sites. On the basis of this finding, we discuss how plant organellar RNA editing sites have diverged during evolution.
机译:高等植物的叶绿体基因组包含20–40个C至U RNA编辑位点,其数量和位置在植物物种之间是多样化的。使用具有叶绿体提取物的体外RNA编辑系统进行的生化分析表明,蛋白质位点识别因子与其各自的RNA编辑位点之间存在一对一的识别,但其刚性和通用性仍未确定。在这项研究中,我们借助于来自烟草叶绿体提取物的体外RNA编辑系统和紫外线交联实验解决了这个问题。我们发现,烟草叶绿体转录本的ndhB-9和ndhF-1编辑位点均受95 kDa的位点特异性反式作用因子约束。 ndhB-9和ndhF-1 RNA之间的交叉竞争实验表明,与ndhB-9和ndhF-1位点特异性结合的95 kDa蛋白是相同的蛋白。 ndhB-9和ndhF-1转录本上95 kDa蛋白的结合区在核苷酸序列中显示60%的同一性。这是第一个生化证明叶绿体RNA编辑的位点识别因子可以识别多个位点。在此发现的基础上,我们讨论了植物细胞器RNA编辑位点在进化过程中是如何发散的。

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