Ahle J David, Barr Stephen, Chin A Michael, Battersby Thomas R
Bayer HealthCare LLC, Diagnostics Division 725 Potter Street, Berkeley, CA 94710, USA.
Nucleic Acids Res. 2005 Jun 2;33(10):3176-84. doi: 10.1093/nar/gki628. Print 2005.
Nucleobase analogs 5-methylisocytosine ((Me)isoC) and isoguanine (isoG) form a non-natural base pair in duplex nucleic acids with base pairing specificity orthogonal to the natural nucleobase pairs. Sequencing reactions were conducted with oligodeoxyribonucleotides (ODNs) containing d(Me)isoC and disoG using modified pyrosequencing and dye terminator methods. Modified dye terminator sequencing was generally useful for the sequence identification of ODNs containing the non-natural nucleobases. The two sequencing methods were also used to monitor nucleotide incorporation and subsequent extension by Family A polymerases used in the sequencing methods with a six-nucleobase system that includes d(Me)isoC and disoG. Nucleic acids containing the six-nucleobase system could be replicated well, but not as well as natural nucleic acids, especially in regions of high d(Me)isoC-disoG content. Challenges in replication with d(Me)isoC-disoG are consistent with nucleobase tautomerism in the insertion step and disrupted minor groove nucleobase pair-polymerase contacts in subsequent extension.
核碱基类似物5-甲基异胞嘧啶((Me)isoC)和异鸟嘌呤(isoG)在双链核酸中形成了一种非天然碱基对,其碱基配对特异性与天然核碱基对正交。使用改良的焦磷酸测序法和染料终止法,对含有d(Me)isoC和d isoG的寡脱氧核糖核苷酸(ODN)进行测序反应。改良的染料终止测序法通常可用于鉴定含有非天然核碱基的ODN序列。这两种测序方法还用于监测在包含d(Me)isoC和d isoG的六核碱基系统的测序方法中使用的A族聚合酶的核苷酸掺入及随后的延伸。含有六核碱基系统的核酸能够较好地复制,但不如天然核酸,尤其是在高d(Me)isoC-d isoG含量区域。使用d(Me)isoC-d isoG进行复制时面临的挑战与插入步骤中的核碱基互变异构以及后续延伸中破坏的小沟核碱基对-聚合酶接触一致。