Sismour A Michael, Benner Steven A
Department of Chemistry, University of Florida, Gainesville, FL 32611-7200, USA.
Nucleic Acids Res. 2005 Sep 28;33(17):5640-6. doi: 10.1093/nar/gki873. Print 2005.
Synthetic biology based on a six-letter genetic alphabet that includes the two non-standard nucleobases isoguanine (isoG) and isocytosine (isoC), as well as the standard A, T, G and C, is known to suffer as a consequence of a minor tautomeric form of isoguanine that pairs with thymine, and therefore leads to infidelity during repeated cycles of the PCR. Reported here is a solution to this problem. The solution replaces thymidine triphosphate by 2-thiothymidine triphosphate (2-thioTTP). Because of the bulk and hydrogen bonding properties of the thione unit in 2-thioT, 2-thioT does not mispair effectively with the minor tautomer of isoG. To test whether this might allow PCR amplification of a six-letter artificially expanded genetic information system, we examined the relative rates of misincorporation of 2-thioTTP and TTP opposite isoG using affinity electrophoresis. The concentrations of isoCTP and 2-thioTTP were optimal to best support PCR amplification using thermostable polymerases of a six-letter alphabet that includes the isoC-isoG pair. The fidelity-per-round of amplification was found to be approximately 98% in trial PCRs with this six-letter DNA alphabet. The analogous PCR employing TTP had a fidelity-per-round of only approximately 93%. Thus, the A, 2-thioT, G, C, isoC, isoG alphabet is an artificial genetic system capable of Darwinian evolution.
基于包含两个非标准核碱基异鸟嘌呤(isoG)和异胞嘧啶(isoC)以及标准的A、T、G和C的六字母遗传字母表的合成生物学,已知会因异鸟嘌呤的一种与胸腺嘧啶配对的次要互变异构形式而受到影响,因此在PCR的重复循环过程中会导致错误掺入。本文报道了该问题的一种解决方案。该解决方案是用2-硫代胸腺嘧啶三磷酸(2-thioTTP)替代胸腺嘧啶三磷酸。由于2-硫代胸腺嘧啶(2-thioT)中硫酮单元的体积和氢键性质,2-硫代胸腺嘧啶不会有效地与异鸟嘌呤的次要互变异构体错配。为了测试这是否可能允许对六字母人工扩展遗传信息系统进行PCR扩增,我们使用亲和电泳检查了2-硫代胸腺嘧啶三磷酸(2-thioTTP)和胸腺嘧啶三磷酸(TTP)与异鸟嘌呤相对的错误掺入率。异胞嘧啶三磷酸(isoCTP)和2-硫代胸腺嘧啶三磷酸(2-thioTTP)的浓度对于使用包含异胞嘧啶-异鸟嘌呤对的六字母字母表的热稳定聚合酶进行最佳支持PCR扩增是最优的。在使用这种六字母DNA字母表的试验PCR中,发现每轮扩增的保真度约为98%。采用胸腺嘧啶三磷酸(TTP)的类似PCR每轮保真度仅约为93%。因此,A、2-硫代胸腺嘧啶、G、C、异胞嘧啶、异鸟嘌呤字母表是一种能够进行达尔文进化的人工遗传系统。