Kolk M H, Heus H A, Hilbers C W
Nijmegen SON Research Center for Molecular Structure, Design and Synthesis, Laboratory of Biophysical Chemistry, University of Nijmegen, The Netherlands.
EMBO J. 1997 Jun 16;16(12):3685-92. doi: 10.1093/emboj/16.12.3685.
The structure of an RNA hairpin containing a seven-nucleotide loop that is present in the self-cleaving sequence of hepatitis delta virus antigenomic RNA was determined by high resolution NMR spectroscopy. The loop, which is composed of only one purine and six pyrimidines, has a suprisingly stable structure, mainly supported by sugar hydroxyl hydrogen bonds and base-base and base-phosphate stacking interactions. Compared with the structurally well-determined, seven-membered anticodon loop in tRNA, the sharp turn which affects the required 180 degrees change in direction of the sugar-phosphate backbone in the loop is shifted one nucleotide in the 3' direction. This change in direction can be characterized as a reversed U-turn. It is expected that the reversed U-turn may be found frequently in other molecules as well. There is evidence for a new non-Watson-Crick UC base pair formed between the first and the last residue in the loop, while most of the other bases in the loop are pointing outwards making them accessible to solvent. From chemical modification, mutational and photocrosslinking studies, a similar picture develops for the structure of the hairpin in the active ribozyme indicating that the loop structure in the isolated hairpin and in the ribozyme is very similar.
通过高分辨率核磁共振光谱法确定了一种存在于丁型肝炎病毒反基因组RNA自切割序列中的、含有七核苷酸环的RNA发夹结构。该环仅由一个嘌呤和六个嘧啶组成,具有令人惊讶的稳定结构,主要由糖羟基氢键以及碱基-碱基和碱基-磷酸堆积相互作用维持。与结构已明确的tRNA中的七元反密码子环相比,影响环中糖-磷酸主链方向所需180度转变的急转弯在3'方向上偏移了一个核苷酸。这种方向变化可被描述为反向U型转弯。预计反向U型转弯在其他分子中也可能经常出现。有证据表明在环的第一个和最后一个残基之间形成了一种新的非沃森-克里克UC碱基对,而环中的大多数其他碱基向外指向,使其易于与溶剂接触。从化学修饰、突变和光交联研究来看,活性核酶中发夹结构的情况类似,表明分离出的发夹和核酶中的环结构非常相似。