Miyahara Ryo, Taniguchi Yosuke
Graduate School of Pharmaceutical Sciences, Kyushu University, 3-1-1 Maidashi, Higashi-ku, Fukuoka 812-8582, Japan.
Faculty of Medicine, Dentistry and Pharmaceutical Sciences, Okayama University, 1-1-1 Tsushima-naka, Kita-ku, Okayama 700-8530, Japan.
Org Lett. 2025 Sep 5;27(35):9749-9752. doi: 10.1021/acs.orglett.5c03060. Epub 2025 Aug 26.
Non-natural base pair formation provides insight into new functions of nucleic acids. Therefore, various artificial base pairs have been developed in both DNA and RNA. In this work, we successfully synthesized pseudocytidine from commercially available pseudouridine to form base pairs with isoguanine, also known as 2-OH-adenine, in RNA. Measurement of the melting temperature with the base pair incorporated at the center of a 13-mer RNA showed the highest value for the ψ-rC and iso-rG (2-OH-rA) base pair. This base pair formation exhibited a high melting temperature regardless of whether it was incorporated into the pyrimidine or purine strand, indicating that it can form a stable and selective duplex RNA.
非天然碱基对的形成有助于深入了解核酸的新功能。因此,人们已经在DNA和RNA中开发了各种人工碱基对。在这项工作中,我们成功地从市售假尿苷合成了假胞苷,以便在RNA中与异鸟嘌呤(也称为2-羟基腺嘌呤)形成碱基对。对在13聚体RNA中心掺入该碱基对的熔解温度进行测量,结果表明ψ-rC和iso-rG(2-OH-rA)碱基对的值最高。无论该碱基对是掺入嘧啶链还是嘌呤链,这种碱基对的形成都表现出较高的熔解温度,这表明它可以形成稳定且具有选择性的双链RNA。