Saito-Tarashima Noriko, Minakawa Noriaki
Graduate School of Pharmaceutical Science, Tokushima University.
Chem Pharm Bull (Tokyo). 2018;66(2):132-138. doi: 10.1248/cpb.c17-00685.
In this review, we have summarized the research effort into the development of unnatural base pairs beyond standard Watson-Crick (WC) base pairs for synthetic biology. Prior to introducing our research results, we present investigations by four outstanding groups in the field. Their research results demonstrate the importance of shape complementarity and stacking ability as well as hydrogen-bonding (H-bonding) patterns for unnatural base pairs. On the basis of this research background, we developed unnatural base pairs consisting of imidazo[5',4':4.5]pyrido[2,3-d]pyrimidines and 1,8-naphthyridines, i.e., Im : Na pairs. Since Im bases are recognized as ring-expanded purines and Na bases are recognized as ring-expanded pyrimidines, Im : Na pairs are expected to satisfy the criteria of shape complementarity and enhanced stacking ability. In addition, these pairs have four non-canonical H-bonds. Because of these preferable properties, ImN : NaO, one of the Im : Na pairs, is recognized as a complementary base pair in not only single nucleotide insertion, but also the PCR.
在本综述中,我们总结了合成生物学领域在开发超越标准沃森-克里克(WC)碱基对的非天然碱基对方面的研究成果。在介绍我们的研究结果之前,我们展示了该领域四个杰出团队的研究情况。他们的研究结果证明了形状互补性、堆积能力以及非天然碱基对的氢键(H键)模式的重要性。基于这一研究背景,我们开发了由咪唑并[5',4':4.5]吡啶并[2,3-d]嘧啶和1,8-萘啶组成的非天然碱基对,即Im:Na对。由于Im碱基被认为是扩环嘌呤,Na碱基被认为是扩环嘧啶,Im:Na对有望满足形状互补性和增强堆积能力的标准。此外,这些碱基对有四个非经典氢键。由于这些优良特性,Im:Na对中的ImN:NaO不仅在单核苷酸插入中,而且在PCR中都被认为是互补碱基对。