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Tetrahymena thermophila and Candida albicans Group I intron-derived ribozymes can catalyze the trans-excision-splicing reaction

机译:嗜热四膜虫和白色念珠菌第一类内含子衍生的核酶可催化反式剪切断裂反应

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摘要

Group I intron-derived ribozymes can catalyze a variety of non-native reactions. For the trans-excision-splicing (TES) reaction, an intron-derived ribozyme from the opportunistic pathogen Pneumocystis carinii catalyzes the excision of a predefined region from within an RNA substrate with subsequent ligation of the flanking regions. To establish TES as a general ribozyme-mediated reaction, intron-derived ribozymes from Tetrahymena thermophila and Candida albicans, which are similar to but not the same as that from Pneumocystis, were investigated for their propensity to catalyze the TES reaction. We now report that the Tetrahymena and Candida ribozymes can catalyze the excision of a single nucleotide from within their ribozyme-specific substrates. Under the conditions studied, the Tetrahymena and Candida ribozymes, however, catalyze the TES reaction with lower yields and rates [Tetrahymena (kobs) = 0.14/min and Candida (kobs) = 0.34/min] than the Pneumocystis ribozyme (kobs = 3.2/min). The lower yields are likely partially due to the fact that the Tetrahymena and Candida catalyze additional reactions, separate from TES. The differences in rates are likely partially due to the individual ribozymes ability to effectively bind their 3′ terminal guanosines as intramolecular nucleophiles. Nevertheless, our results demonstrate that group I intron-derived ribozymes are inherently able to catalyze the TES reaction.
机译:I组内含子衍生的核酶可催化多种非天然反应。对于反式剪切(TES)反应,机会性病原体卡氏肺孢子虫的内含子衍生的核酶催化RNA底物内预定区域的切除,随后连接侧翼区域。为了将TES确立为一般的核酶介导的反应,研究了嗜热四膜虫和白色念珠菌的内含子衍生核酶,它们与肺孢子虫的相似但不相同,它们具有催化TES反应的倾向。我们现在报告四膜虫和念珠菌核酶可以催化从其核酶特异性底物内部切除单个核苷酸。但是,在研究的条件下,四膜虫和念珠菌核酶以比单囊肺孢子虫核酶(穗轴= 3.2 /分钟)。较低的收率可能部分是由于四膜虫和念珠菌催化了与TES分开的其他反应。速率差异可能部分归因于单个核酶有效结合其3'末端鸟苷作为分子内亲核试剂的能力。然而,我们的结果表明,第I组内含子衍生的核酶固有地能够催化TES反应。

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