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Use of RNase P for Efficient Preparation of Yeast tRNATyr Transcript and Its Mutants

机译:核糖核酸酶P在酵母tRNA Tyr 转录本及其突变体高效制备中的应用

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Because T7 RNA polymerase has a strong preference for particular sequences to initiate transcription, some RNAs having pyrimidine-rich sequences at their 5′-end (yeast tRNATyr, for example) are hardly transcribed by this enzyme. To circumvent this inconvenience, we have developed an efficient method for in vitro preparation of such tRNAs. The RNA of interest is first transcribed as a precursor form that has purine-rich extra sequences at its 5′-end, then processed with RNase P to generate the objective tRNAs. By using this protocol, we were able to prepare easily and efficiently yeast tRNATyr transcript and its mutants harboring base substitutions within the anticodon loop and/or acceptor stem regions. Aminoacylation analyses of these tRNA transcripts with yeast tyrosyl-tRNA synthetase revealed that the replacement of G34 by C34 (mutation to amber suppressor) severely impaired the aminoacylation, whereas the replacement of the U4:G69 wobble base-pair in the acceptor stem region by C4:G69 normal Watson-Crick type base-pair improved it.
机译:由于T7 RNA聚合酶对启动转录的特定序列具有强烈的偏好,因此一些在其5'末端具有嘧啶富集序列的RNA(例如酵母tRNA Tyr )几乎不会被该酶转录。为了避免这种不便,我们开发了一种有效的体外制备此类tRNA的方法。首先将目标RNA转录为前体形式,该前体形式在其5'端具有富嘌呤的额外序列,然后用RNase P加工以生成目标tRNA。通过使用该协议,我们能够轻松,有效地制备酵母tRNA Tyr 转录本及其突变体,在反密码子环和/或受体茎区域内具有碱基取代。用酵母酪氨酰-tRNA合成酶对这些tRNA转录产物进行氨酰化分析发现,C34取代G34(突变为琥珀抑制物)严重损害了氨酰化作用,而受体干区中的U4:G69摆动碱基对被C4取代。 :G69正常的Watson-Crick型碱基对对其进行了改进。

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