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Structure-function relationships of two closely related group IC3 intron ribozymes from Azoarcus and Synechococcus pre-tRNA

机译:Azoarcus和Synechococcus pre-tRNA的两个密切相关的IC3内含子核酶的结构-功能关系

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摘要

The two group IC3 pre-tRNA introns from Azoarcus and Synechococcus share very analogous secondary structures. They are small group I ribozymes that possess only two peripheral domains, P2 and P9. However, the 3'-splice site hydrolysis activity of the Synechococcus ribozyme critically depends on P2 whereas that of Azoarcus does not, indicating that the structure-function relationships of the two ribozymes are strikingly different despite their structural resemblance. To identify the element(s) that determines the catalytic properties of these ribozymes, we undertook analyses of chimeric ribozymes prepared by swapping their structural elements. We found that the difference can be attributed to a small number of nucleotides within the conserved core region. Further analysis by employing in vitro selection revealed that a base triple interaction (P4bp3 * J6/7-2) is a critical element for determining activity and suggests the existence of a novel base quintuple involving the base triple P4bp5 * J8/7-5.
机译:Azoarcus和Synechococcus的两组IC3 pre-tRNA内含子共有非常相似的二级结构。它们是仅具有两个外围结构域P2和P9的第I组核酶。然而,Synechococcus ribozyme的3'-剪接位点水解活性主要取决于P2,而Azoarcus的3'-剪接位点水解活性则不依赖于P2,这表明尽管两个核酶的结构相似,但它们的结构-功能关系却截然不同。为了确定决定这些核酶催化特性的元素,我们进行了通过交换它们的结构元素而制备的嵌合核酶的分析。我们发现差异可以归因于保守核心区域内的少数核苷酸。通过体外选择的进一步分析显示,碱基三重相互作用(P4bp3 * J6 / 7-2)是确定活性的关键元素,并表明存在涉及碱基三重P4bp5 * J8 / 7-5的新型碱基五元组。

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