Egebjerg J, Christiansen J, Brown R S, Larsen N, Garrett R A
Kemisk Institut, Aarhus Universitet, Denmark.
J Mol Biol. 1989 Apr 20;206(4):651-68. doi: 10.1016/0022-2836(89)90573-1.
Ribonuclease and chemical probes were used to investigate the binding sites of ribosomal protein L18 on Escherichia coli 5 S RNA using both end-labelling and reverse transcriptase procedures. The results, together with earlier data, were superimposed on a cylindrical projection of RNA double helices and most of the protection effects were found to cluster in the major groove at two sites located on one side of the RNA at the junctions of helix II with the adjoining internal loops A and B. The loop A/helix II junction was investigated using 5 S RNA mutants, produced by site-directed mutagenesis, that exhibited altered binding properties to L18. These results, together with those from a circular dichroism study of L18 complexed with the wild-type and different mutant RNAs, enabled us to assign an L18-induced conformational change to loop A. We infer that this change contributes to the co-operative binding of L5 to helix I, which may be reinforced by the binding of the very basic N-terminal peptide of L18 within the minor groove of helix I. A psoralen derivative formed a mono-addition product with U25 within loop B in the free RNA but not in the L18 complex. Moreover, the modified molecules were selected against in L18 binding experiments. Protection effects that occurred within the adjoining helix III and loop C were compatible with a tertiary interaction between loop C and loop B/helix III that could be stabilized by the L18 binding to the junction of helix II and loop B. Further support for a bipartite binding site derived from the finding that ethidium bromide molecules that are displaced from E. coli 5 S RNA by L18 intercalate both at the loop A/helix II junction and in loop B at the binding site of the psoralen derivative.
使用核糖核酸酶和化学探针,通过末端标记和逆转录酶程序研究核糖体蛋白L18在大肠杆菌5S RNA上的结合位点。这些结果与早期数据一起叠加在RNA双螺旋的圆柱投影上,发现大多数保护作用集中在RNA一侧的两个位点的大沟中,位于螺旋II与相邻内部环A和B的交界处。使用通过定点诱变产生的5S RNA突变体研究环A/螺旋II交界处,这些突变体对L18表现出改变的结合特性。这些结果,连同对与野生型和不同突变RNA复合的L18的圆二色性研究结果,使我们能够将L18诱导的构象变化归因于环A。我们推断这种变化有助于L5与螺旋I的协同结合,这可能通过L18非常碱性的N末端肽在螺旋I的小沟内的结合而得到加强。补骨脂素衍生物在游离RNA的环B内与U25形成单加成产物,但在L18复合物中不形成。此外,在L18结合实验中选择了修饰的分子。在相邻的螺旋III和环C内发生的保护作用与环C和环B/螺旋III之间的三级相互作用一致,这种相互作用可以通过L18与螺旋II和环B的交界处的结合而稳定。从L18从大肠杆菌5S RNA置换的溴化乙锭分子在环A/螺旋II交界处和补骨脂素衍生物结合位点的环B中插入这一发现,进一步支持了二分结合位点。