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Transfer of plastid RNA-editing activity to novel sites suggests a critical role for spacing in editing-site recognition

机译:将质体RNA编辑活性转移到新位点表明间距在编辑位点识别中的关键作用

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摘要

RNA editing in higher plant plastids alters mRNA sequences by C-to-U conversions at highly specific sites through an unknown mechanism. To elucidate how the cytidine residues to be edited are specifically recognized and distinguished from other cytidines in close proximity, we have changed in vivo the distances of two plastid RNA-editing sites from their essential upstream cis-acting sequence element. Analysis of RNA editing in transgenic chloroplasts revealed that reduction of this distance by 1 nt entirely abolishes RNA editing. Surprisingly, deletions or combinations of deletional and point mutations that shift a heterologous cytidine residue in the same distance from the upstream cis-element as the editing site in the wild type result in transfer of the RNA-editing activity to the heterologous cytidine whereas the wild-type site remains unedited. Our results suggest that the molecular identity of at least some editing sites in the chloroplast genome is defined by their distance from an essential upstream sequence element.
机译:高等植物质体中的RNA编辑通过未知机制通过高度特异性位点的C到U转换来改变mRNA序列。为了阐明如何特别识别待编辑的胞苷残基并与附近的其他胞苷区分开,我们在体内改变了两个质体RNA编辑位点距其必需的上游顺式作用序列元件的距离。对转基因叶绿体中RNA编辑的分析表明,将该距离减少1 nt完全消除了RNA编辑。出人意料的是,将异源胞苷残基从上游顺式元件移至与野生型编辑位点相同距离的缺失或缺失突变或点突变的组合,导致RNA编辑活性转移至异源胞苷,而野生型类型的站点仍未编辑。我们的结果表明,叶绿体基因组中至少一些编辑位点的分子同一性是由它们与必要的上游序列元件的距离来定义的。

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