Dallas A, Moore P B
Department of Chemistry, Yale University, New Haven, CT 06520-8107, USA.
Structure. 1997 Dec 15;5(12):1639-53. doi: 10.1016/s0969-2126(97)00311-0.
5S ribosomal RNA is the smallest rRNA. Its Watson-Crick helices were identified more than 20 years ago, but the conformations of its loops have long defied analysis. One of the three arms of 5S rRNA, residues 69-106 in Escherichia coli, contains a 14-residue internal loop called loop E. The sequence of loop E is conserved within kingdoms, and is terminated by a pyrimidine-rich loop called loop D. Loop E is the binding site for the ribosomal protein L25 in the E. coli ribosome.
The solution structure of a 42-nucleotide derivative of E. coli 5S rRNA that includes loops D and E has been determined by nuclear magnetic resonance spectroscopy. Formally, loop E is not a loop at all; it is a double helical structure that contains seven, consecutive non-Watson-Crick base pairs. The major groove of the molecule is narrowed in loop E, and an unusual array of hydrogen-bond donors and acceptors appear in its minor groove. Loop D, which on paper looks like a three-pyrimidine terminal loop closed by a GC, is better thought of as a five-base loop because its closing GC is not a normal Watson-Crick pair. The two pyrimidines on the 5'-side of the loop are stacked on each other, and tilt into the minor groove of the adjacent helix. The third pyrimidine is fully exposed to solvent.
This structure rationalizes all the biochemical and chemical protection data available for the loop E-loop D arm of intact 5S rRNA. While the molecule is double helical over its entire length, the geometry of its internal loop is highly irregular, and its irregularities may explain why the loop E-loop D arm of 5S rRNA interacts specifically with ribosomal protein L25 in E. coli.
5S核糖体RNA是最小的核糖体RNA。其沃森-克里克螺旋在20多年前就已被识别,但它环区的构象长期以来一直难以分析。5S核糖体RNA的三个臂之一,在大肠杆菌中对应69 - 106位残基,包含一个名为环E的14个残基的内部环。环E的序列在各生物界中保守,并由一个富含嘧啶的环(环D)终止。环E是大肠杆菌核糖体中核糖体蛋白L25的结合位点。
通过核磁共振光谱法确定了包含环D和环E的大肠杆菌5S核糖体RNA 42个核苷酸衍生物的溶液结构。从形式上看,环E根本不是一个环;它是一个双螺旋结构,包含七个连续的非沃森-克里克碱基对。分子的大沟在环E处变窄,其小沟中出现了一系列不寻常的氢键供体和受体。环D在纸面上看起来像是一个由GC封闭的三嘧啶末端环,但最好将其视为一个五碱基环,因为其封闭的GC不是正常的沃森-克里克对。环5'侧的两个嘧啶相互堆叠,并倾斜进入相邻螺旋的小沟。第三个嘧啶完全暴露于溶剂中。
该结构使完整5S核糖体RNA环E - 环D臂的所有生化和化学保护数据合理化。虽然该分子在其全长上是双螺旋的,但其内部环的几何形状高度不规则,其不规则性可能解释了为什么5S核糖体RNA的环E - 环D臂在大肠杆菌中与核糖体蛋白L25特异性相互作用。