Padrta Petr, Stefl Richard, Králík Lukás, Zídek Lukás, Sklenár Vladimir
National Centre for Biomolecular Research, Masaryk University, Brno, Czech Republic.
J Biomol NMR. 2002 Sep;24(1):1-14. doi: 10.1023/a:1020632900961.
The structure of the 13C,15N-labeled d(GCGAAGC) hairpin, as determined by NMR spectroscopy and refined using molecular dynamics with NOE-derived distances, torsion angles, and residual dipolar couplings (RDCs), is presented. Although the studied molecule is of small size, it is demonstrated that the incorporation of diminutive RDCs can significantly improve local structure determination of regions undefined by the conventional restraints. Very good correlation between the experimental and back-calculated small one- and two-bond 1H-13C, 1H-15N, 13C-13C and 13C-15N coupling constants has been attained. The final structures clearly show typical features of the miniloop architecture. The structure is discussed in context of the extraordinary stability of the d(GCGAAGC) hairpin, which originates from a complex interplay between the aromatic base stacking and hydrogen bonding interactions.
本文展示了通过核磁共振光谱法测定并利用分子动力学结合源自核Overhauser效应(NOE)的距离、扭转角和残余偶极耦合(RDC)进行优化后的13C、15N标记的d(GCGAAGC)发夹结构。尽管所研究的分子尺寸较小,但结果表明,纳入微小的RDC可显著改善传统约束未定义区域的局部结构测定。实验测得的以及通过反向计算得到的单键和双键1H-13C、1H-15N、13C-13C和13C-15N耦合常数之间具有很好的相关性。最终结构清晰地显示出小环结构的典型特征。结合d(GCGAAGC)发夹的非凡稳定性对该结构进行了讨论,其稳定性源于芳香碱基堆积和氢键相互作用之间的复杂相互作用。