Pon R T, Usman N, Damha M J, Ogilvie K K
Nucleic Acids Res. 1986 Aug 26;14(16):6453-70. doi: 10.1093/nar/14.16.6453.
Phosphoramidite reagents can phosphitylate guanine bases at the O6-position during solid phase synthesis and serious chain cleavage occurs if the base phosphitylation is not eliminated before the iodine/water oxidation step. This can be accomplished by blocking the O6-position with a 2-cyanoethyl protecting group for deoxyribonucleotides or with a p-nitrophenylethyl group for ribonucleotides, regenerating the guanine base with water or acetate ions, or using N-methylanilinium trifluoroacetate (TAMA) as the phosphoramidite activator. The effectiveness of these methods was demonstrated by both 31P NMR studies and by the synthesis of d(Gp)23G, (Gp)14G, and d-(Gp)13rG sequences.
亚磷酰胺试剂在固相合成过程中可使鸟嘌呤碱基在O6位发生磷酰化,如果在碘/水氧化步骤之前不消除碱基磷酰化,则会发生严重的链断裂。这可以通过用2-氰基乙基保护基团封闭脱氧核糖核苷酸的O6位或用对硝基苯乙基封闭核糖核苷酸的O6位、用水或醋酸根离子使鸟嘌呤碱基再生,或使用N-甲基苯胺三氟乙酸盐(TAMA)作为亚磷酰胺活化剂来实现。31P NMR研究以及d(Gp)23G、(Gp)14G和d-(Gp)13rG序列的合成均证明了这些方法的有效性。