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Incorporation of the Fluorescent Ribonucleotide Analogue tCTP by T7 RNA Polymerase

机译:T7 RNA聚合酶掺入荧光核糖核苷酸类似物tCTP

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摘要

Fluorescent RNA is an important analytical tool in medical diagnostics, RNA cytochemistry, and RNA aptamer development. We have synthesized the fluorescent ribonucleotide analogue 1,3-diaza-2-oxophenothiazine-ribose-5'-triphosphate (tCTP) and tested it as substrate for T7 RNA polymerase in transcription reactions, a convenient route for generating RNA in vitro. When transcribing a guanine, T7 RNA polymerase incorporates tCTP with 2-fold higher catalytic efficiency than CTP and efficiently polymerizes additional NTPs onto the tC. Remarkably, T7 RNA polymerase does not incorporate tCTP with the same ambivalence opposite guanine and adenine with which DNA polymerases incorporate the analogous dtCTP. While several DNA polymerases discriminated against a d(tC-A) base pair only by factors < 10, T7 RNA polymerase discriminates against tC-A base pair formation by factors of 40 and 300 when operating in the elongation and initiation mode, respectively. These catalytic properties make T7 RNA polymerase an ideal tool for synthesizing large fluorescent RNA, as we demonstrated by generating a approx800 nucleotide RNA in which every cytosine was replaced with tC.
机译:荧光RNA是医学诊断,RNA细胞化学和RNA适体开发中的重要分析工具。我们已经合成了荧光核糖核苷酸类似物1,3-二氮杂-2-氧代吩噻嗪-核糖-5'-三磷酸(tCTP),并将其作为T7 RNA聚合酶在转录反应中的底物进行了测试,这是体外产生RNA的便捷途径。转录鸟嘌呤时,T7 RNA聚合酶掺入的tCTP的催化效率是CTP的2倍,并且可以将其他NTP有效地聚合到tC上。值得注意的是,T7 RNA聚合酶没有掺入与鸟嘌呤和腺嘌呤相反的,与DNA聚合酶掺入类似的dtCTP具有相同矛盾度的tCTP。尽管几种DNA聚合酶仅以<10为因数来区分d(tC-A)碱基对,但是当分别在延伸模式和起始模式下运行时,T7 RNA聚合酶则以40和300来区分tC-A碱基对。这些催化特性使T7 RNA聚合酶成为合成大型荧光RNA的理想工具,正如我们通过产生一个大约800个核苷酸的RNA(其中每个胞嘧啶都被tC取代)所证明的那样。

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