Cozzone P J, Jardetzky O
Biochemistry. 1976 Nov 2;15(22):4853-9. doi: 10.1021/bi00667a016.
A phosphorus-31 nuclear magnetic resonance (NMR) study of adenine, uracil, and thymine mononucleotides, their cyclic analogues, and the corresponding dinucleotides is reported. From the pH dependence of phosphate chemical shifts, pKa values of 6.25-6.30 are found for all 5'-mononucleotides secondary phosphate ionization, independently from the nature of the base and the presence of a hydroxyl group at the 2' position. Conversely, substitution of a hydrogen atom for a 2'-OH lowers the pKa of 3'-monoribonucleotides from 6.25 down to 5.71-5.85. This indication of a strong influence of the 2'-hydroxyl group on the 3'-phosphate is confirmed by the existence of a 0.4 to 0.5 ppm downfield shift induced by the 2'-OH on the phosphate resonance of 3'-monoribonucleotides, and 3',5'-cyclic nucleotides and dinucleotides with respect to the deoxyribosyl analogues. Phosphate chemical shifts and titration curves are affected by the ionization and the type of the base. Typically, deviations from the theoretical Henderson-Hasselbalch plots are observed upon base titration. In addition, purine displays a more deshielding influence than pyrimidine on the phosphate groups of most of the mononucleotides (0.10 to 0.25 ppm downfield shift) with a reverse situation for dinucleotides. These effects together with the importance of stereochemical arrangement (furanose ring pucker, furanose-phosphate backbone conformation, O-P-O bond angle) on the phosphate chemical shifts are discussed.
本文报道了对腺嘌呤、尿嘧啶和胸腺嘧啶单核苷酸、它们的环状类似物以及相应二核苷酸的磷-31核磁共振(NMR)研究。从磷酸盐化学位移的pH依赖性可知,所有5'-单核苷酸二级磷酸盐电离的pKa值为6.25 - 6.30,与碱基的性质以及2'位羟基的存在无关。相反,用氢原子取代2'-OH会使3'-单核糖核苷酸的pKa从6.25降至5.71 - 5.85。2'-羟基对3'-磷酸有强烈影响这一迹象通过以下事实得到证实:2'-OH会使3'-单核糖核苷酸、3',5'-环核苷酸和二核苷酸相对于脱氧核糖基类似物的磷酸盐共振产生0.4至0.5 ppm的向低场位移。磷酸盐化学位移和滴定曲线受碱基的电离和类型影响。通常,在碱基滴定过程中会观察到与理论亨德森 - 哈塞尔巴尔赫图的偏差。此外,在大多数单核苷酸中,嘌呤对磷酸基团的去屏蔽作用比嘧啶更强(向低场位移0.10至0.25 ppm),而在二核苷酸中情况则相反。本文还讨论了这些效应以及立体化学排列(呋喃糖环褶皱、呋喃糖 - 磷酸主链构象、O - P - O键角)对磷酸盐化学位移的重要性。