Matsuda Shigeo, Henry Allison A, Schultz Peter G, Romesberg Floyd E
Department of Chemistry, The Scripps Research Institute, 10550 North Torrey Pines Road, La Jolla, California 92037, USA.
J Am Chem Soc. 2003 May 21;125(20):6134-9. doi: 10.1021/ja034099w.
The stability and replication of DNA containing self-pairs formed between unnatural nucleotides bearing benzofuran, benzothiophene, indole, and benzotriazole nucleobases are reported. These nucleobase analogues are based on a similar scaffold but have different hydrogen-bond donor/acceptor groups that are expected to be oriented in the duplex minor groove. The unnatural base pairs do not appear to induce major structural distortions and are accommodated within the constraints of a B-form duplex. The differences between these unnatural base pairs are manifest only in the polymerase-mediated extension step, not in base-pair stability or synthesis. The benzotriazole self-pair is extended with an efficiency that is only 200-fold less than a correct natural base pair. The data are discussed in terms of available polymerase crystal structures and imply that further modifications may result in unnatural base pairs that can be both efficiently synthesized and extended, resulting in an expanded genetic alphabet.
报道了含有在带有苯并呋喃、苯并噻吩、吲哚和苯并三唑核碱基的非天然核苷酸之间形成的自配对的DNA的稳定性和复制情况。这些核碱基类似物基于相似的支架,但具有不同的氢键供体/受体基团,预计它们会排列在双链体小沟中。这些非天然碱基对似乎不会引起主要的结构畸变,并且能在B型双链体的限制范围内存在。这些非天然碱基对之间的差异仅在聚合酶介导的延伸步骤中表现出来,而不是在碱基对稳定性或合成方面。苯并三唑自配对的延伸效率仅比正确的天然碱基对低200倍。根据现有的聚合酶晶体结构对数据进行了讨论,这意味着进一步的修饰可能会产生既能高效合成又能延伸的非天然碱基对,从而形成扩展的遗传字母表。