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A two-unnatural-base-pair system toward the expansion of the genetic code

机译:面向遗传密码扩展的两个非自然碱基对系统

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Toward the site-specific incorporation of amino acid analogues into proteins, a two-unnatural-base-pair system was developed for coupled transcription-translation systems with the expanded genetic code. A previously designed unnatural base pair between 2-amino-6-(2-thienyl)purine (denoted by s) and pyridin-2-one (denoted by y) was used for the site-specific incorporation of yTP into RNA opposite s in templates by T7 RNA polymerase. For the site-specific incorporation of sTP into RNA, a newly developed unnatural base, imidazolin-2-one (denoted by z), is superior to y as a template base for pairing with s in T7 transcription. The combination of the s-y and s-z pairs provides a powerful tool to prepare both y-containing mRNA and s-containing tRNA for efficient coupled transcription-translation systems, in which the genetic code is expanded by the coclon-anticodon interactions mediated by the s-y pair. In addition, the nucleoside of s is strongly fluorescent, and thus the s-z pair enables the site-specific fluorescent labeling of RNA molecules. These unnatural-base-pair studies provide valuable information for understanding the mechanisms of replication and transcription.
机译:为了将氨基酸类似物定点结合到蛋白质中,开发了两个非天然碱基对系统,用于具有扩展遗传密码的偶联转录翻译系统。使用先前设计的2-氨基-6-(2-噻吩基)嘌呤(以s表示)和吡啶2-2-酮(以y表示)之间的非天然碱基对,将yTP特异地掺入与s相对的RNA中。 T7 RNA聚合酶的模板。为了将sTP特异地掺入RNA中,新开发的非天然碱基咪唑啉-2-酮(以z表示)比y更好,因为它是在T7转录中与s配对的模板碱基。 sy和sz对的组合提供了一个强大的工具,可为有效的偶联转录翻译系统制备含y的mRNA和含s的tRNA,其中遗传密码通过sy对介导的coclon-anticodon相互作用而扩展。此外,s的核苷具有强荧光性,因此s-z对可实现RNA分子的位点特异性荧光标记。这些非天然碱基对研究为理解复制和转录机制提供了有价值的信息。

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