Hart P A
Biophys J. 1978 Dec;24(3):833-48. doi: 10.1016/S0006-3495(78)85423-X.
The phosphorus-proton nuclear Overhauser effect (NOE) was used to investigate the quantitative distribution of rotamers about the C3'--O3' bond (phi') of 3'-AMP and 2',3'-cyclic-CMP and the C4'--C5', C5'--O5' bonds (psi, phi) of 5'-AMP. Phosphorus-proton and proton-proton NOE's were used to provide a qualitative insight into the backbone conformation and the glycosyl angle torsions of adenosylyl-(3' leads to 5')-adenosine (ApA). The major psi rotamer in 5'-AMP is the 60 degree (gg) form, while the major phi rotamer is the 180 degrees (g'g') form. The constrained model, 2',3'-cyclic-CMP, manifests the C3'endo furanose pucker predominantly. The results from these two models are consistent with nuclear magnetic resonance (NMR) J coupling analyses. The phi; distribution of 3'-AMP is dominated (77%) by the 180 degrees g- rotamer. The 3'-AMP results are consistent with phosphorus-hydrogen coupling constant analyses, but do not accord with phosphorus-carbon coupling constant results. The phosphorus-proton NOE reveals that the phosphorus of ApA occupies a region of conformation space not seen in 5'-AMP. The proton-proton NOE on APA shows a significant portion of syn rotamer in both X distributions and detects a cross-purine ring interaction consistent with base stacking known to exist in this system.
磷-质子核Overhauser效应(NOE)被用于研究3'-AMP和2',3'-环化-CMP中围绕C3'-O3'键(φ')的旋转异构体的定量分布以及5'-AMP中C4'-C5'、C5'-O5'键(ψ、φ)的旋转异构体的定量分布。磷-质子和质子-质子NOE被用于定性了解腺苷酰基-(3'→5')-腺苷(ApA)的主链构象和糖基角扭转。5'-AMP中主要的ψ旋转异构体是60度(gg)形式,而主要的φ旋转异构体是180度(g'g')形式。受限模型2',3'-环化-CMP主要表现出C3'内型呋喃糖构象。这两个模型的结果与核磁共振(NMR)J耦合分析一致。3'-AMP的φ分布主要由180度的g-旋转异构体主导(77%)。3'-AMP的结果与磷-氢耦合常数分析一致,但与磷-碳耦合常数结果不一致。磷-质子NOE表明,ApA的磷占据了5'-AMP中未见的构象空间区域。APA上的质子-质子NOE在两个X分布中都显示出相当一部分顺式旋转异构体,并检测到与该系统中已知的碱基堆积一致的跨嘌呤环相互作用。