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2-氨基-6-(2-噻吩基)嘌呤与互补碱基之间的非天然碱基对。

Unnatural base pairs between 2-amino-6-(2-thienyl)purine and the complementary bases.

作者信息

Hirao I, Fujiwara T, Kimoto M, Mitsui T, Okuni T, Ohtsuki T, Yokoyama S

机构信息

Yokoyama CytoLogic Project, ERATO, JST, RIKEN, 2-1 Hirosawa, Wako-shi, Saitama 351-0198, Japan.

出版信息

Nucleic Acids Symp Ser. 2000(44):261-2. doi: 10.1093/nass/44.1.261.

Abstract

The unnatural base, 2-amino-6-(2-thienyl)purine (designated as s), instead of 2-amino-6-(N,N-dimethylamino)purine (designated as x), was designed in order to improve the specificity and efficiency of the base pairing with pyridin-2-one (designated as y). DNA fragments containing s were chemically synthesized, and the thermal stability and the enzymatic reactions involving the s-y pairing were examined. Thermal denaturation experiments showed that the DNA duplex (12-mer) containing the s-y pair was more stable than that containing the x-y pair. The incorporation of dyTP was also more advantageous to the s-y pairing than the x-y pairing in single-nucleotide insertion experiments using the Klenow fragment of Escherichia coli DNA polymerase I.

摘要

为了提高与吡啶 -2- 酮(标记为 y)碱基配对的特异性和效率,设计了非天然碱基 2- 氨基 -6-(2- 噻吩基)嘌呤(标记为 s),而非 2- 氨基 -6-(N,N- 二甲基氨基)嘌呤(标记为 x)。化学合成了含有 s 的 DNA 片段,并检测了涉及 s-y 配对的热稳定性和酶促反应。热变性实验表明,含有 s-y 对的 DNA 双链体(12 聚体)比含有 x-y 对的更稳定。在使用大肠杆菌 DNA 聚合酶 I 的 Klenow 片段进行的单核苷酸插入实验中,掺入 dyTP 对 s-y 配对也比 x-y 配对更有利。

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