Sich C, Ohlenschläger O, Ramachandran R, Görlach M, Brown L R
Institut für Molekulare Biotechnologie eV, Abteilung für Molekulare Biophysik/NMR Spektroskopie, Postfach 100 813, D-07708 Jena, Germany.
Biochemistry. 1997 Nov 18;36(46):13989-4002. doi: 10.1021/bi971207g.
Structural features of a 19-nucleotide RNA hairpin loop (5'-GGCGUACGUUUCGUACGCC-3'), a loop motif which occurs in eukaryotic 18S rRNA, have been derived using multidimensional heteronuclear NMR spectroscopy in combination with local conformational analysis and torsion angle distance geometry followed by restrained energy minimization. A method to obtain both the 3JC4'P3' and 3JC4'P5' coupling constants from a set of spin-echo difference constant time HSQC spectra is introduced, and it is shown how these couplings can be assigned to the backbone angles beta and epsilon. A total of 280 distance constraints as well as 132 homo- and heteronuclear three-bond scalar coupling constants were derived from the NMR data. The structure which has been determined is a pentaloop rather than a triloop with no base pairing between G8 and C12. G8 is pointed to the minor groove where it forms a base triplet with C7-G13 that is further stabilized by hydrogen bonding to the 2'-hydroxyl group of C7. C12 is directed to the major groove where its conformation is stabilized by hydrogen bonding between O2 and HO2'. The NMR data suggest two possible, interconverting conformations with stacking of bases U10-G8 or U11-C7. Overall, the loop provides a variety of interaction sites for RNA or protein interactions.
一种19个核苷酸的RNA发夹环(5'-GGCGUACGUUUCGUACGCC-3')的结构特征已通过多维异核核磁共振光谱法推导得出,该环基序存在于真核生物18S rRNA中,推导过程结合了局部构象分析和扭转角距离几何,随后进行受限能量最小化。介绍了一种从一组自旋回波差异常数时间HSQC光谱中获取3JC4'P3'和3JC4'P5'耦合常数的方法,并展示了如何将这些耦合分配给主链角β和ε。从核磁共振数据中总共推导得出280个距离约束以及132个同核和异核三键标量耦合常数。所确定的结构是一个五碱基环而非三碱基环,G8和C12之间没有碱基配对。G8指向小沟,在那里它与C7-G13形成一个碱基三联体,并通过与C7的2'-羟基形成氢键进一步稳定。C12指向大沟,其构象通过O2和HO2'之间的氢键稳定。核磁共振数据表明存在两种可能的、相互转换的构象,其中碱基U10-G8或U11-C7发生堆积。总体而言,该环为RNA或蛋白质相互作用提供了多种相互作用位点。