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Base pairing involving artificial bases in vitro and in vivo

机译:体外和体内涉及人工碱基的碱基配对

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摘要

Herein we report the synthesis of N8-glycosylated 8-aza-deoxyguanosine (N8-8-aza-dG) and 8-aza-9-deaza-deoxyguanosine (N8-8-aza-9-deaza-dG) nucleotides and their base pairing properties with 5-methyl-isocytosine (d-isoCMe), 8-amino-deoxyinosine (8-NH2-dI), 1-N-methyl-8-amino-deoxyinosine (1-Me-8-NH2-dI), 7,8-dihydro-8-oxo-deoxyinosine (8-Oxo-dI), 7,8-dihydro-8-oxo-deoxyadenosine (8-Oxo-dA), and 7,8-dihydro-8-oxo-deoxyguanosine (8-Oxo-dG), in comparison with the d-isoCMe:d-isoG artificial genetic system. As demonstrated by Tm measurements, the N8-8-aza-dG:d-isoCMe base pair formed less stable duplexes as the C:G and d-isoCMe:d-isoG pairs. Incorporation of 8-NH2-dI versus the N8-8-aza-dG nucleoside resulted in a greater reduction in Tm stability, compared to d-isoCMe:d-isoG. Insertion of the methyl group at the N1 position of 8-NH2-dI did not affect duplex stability with N8-8-aza-dG, thus suggesting that the base paring takes place through Hoogsteen base pairing. The cellular interpretation of the nucleosides was studied, whereby a lack of recognition or mispairing of the incorporated nucleotides with the canonical DNA bases indicated the extent of orthogonality in vivo. The most biologically orthogonal nucleosides identified included the 8-amino-deoxyinosines (1-Me-8-NH2-dI and 8-NH2-dI) and N8-8-aza-9-deaza-dG. The 8-oxo modifications mimic oxidative damage ahead of cancer development, and the impact of the MutM mediated recognition of these 8-oxo-deoxynucleosides was studied, finding no significant impact in their in vivo assay.
机译:本文报道了N 8 -糖基化的8-氮杂-脱氧鸟苷(N 8 -8-aza-dG)和8-氮杂9-脱氮-脱氧鸟苷( N 8 -8-aza-9-deaza-dG)核苷酸及其与5-甲基-异胞嘧啶(d-isoC Me ),8-氨基-的碱基配对特性脱氧肌苷(8-NH2-dI),1-N-甲基-8-氨基-脱氧肌苷(1-Me-8-NH2-dI),7,8-二氢-8-氧代脱氧肌苷(8-Oxo-dI)与d-isoC 相比,分别是7,8-二氢-8-氧代-脱氧腺苷(8-Oxo-dA)和7,8-二氢-8-氧代-脱氧鸟苷(8-Oxo-dG) Me :d-isoG人工遗传系统。如Tm测量所示,N 8 -8-氮杂-dG:d-isoC Me 碱基对形成的不稳定双链体与C:G和d-isoC < sup> Me :d-isoG对。与d-isoC Me :d-相比,掺入8-NH2-dI相对于N 8 -8-aza-dG核苷可导致Tm稳定性更大的降低。 isoG。甲基插入8-NH2-dI的N 1 位置不会影响N 8 -8-aza-dG的双链体稳定性,因此表明碱基配对通过Hoogsteen碱基配对进行。研究了核苷的细胞解释,从而缺乏对掺入的核苷酸与规范DNA碱基的识别或配对错误,表明体内的正交性程度。鉴定出的生物学上最正交的核苷包括8-氨基-脱氧肌苷(1-Me-8-NH2-dI和8-NH2-dI)和N 8 -8-aza-9-deaza-dG 。 8-oxo修饰模拟癌症发展之前的氧化损伤,并且研究了MutM介导的对这些8-oxo-deoxynucleosides的识别的影响,在其体内测定中未发现显着影响。

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