Rutgers C A, Rientjes J M, van 't Riet J, Raué H A
Biochemisch Laboratorium Vrije Universiteit, Amsterdam, The Netherlands.
J Mol Biol. 1991 Mar 20;218(2):375-85. doi: 10.1016/0022-2836(91)90719-m.
We have delineated the region of yeast ribosomal protein L25 responsible for its specific binding to 26 S rRNA by a novel approach using in vitro synthesized, [35S]methionine-labeled fragments as well as point mutants of the L25 protein. The rRNA binding capacity of these mutant polypeptides was tested by incubation with an in vitro transcribed, biotinylated fragment of yeast 26 S rRNA that contains the complete L25 binding site. Protein-rRNA interaction was assayed by binding of the rRNA-r-protein complex to streptavidin-agarose followed either by analysis of the bound polypeptide by SDS/polyacrylamide gel electrophoresis or by precipitation with trichloroacetic acid. Our results show that the structural elements necessary and sufficient for specific interaction of L25 with 26 S rRNA are contained in the region bordered by amino acids 62 and 126. The remaining parts of the protein, in particular the C-terminal 16 residues, while not essential for binding, do enhance its affinity for 26 S rRNA. To test whether, as suggested by the results of the deletion experiments, the evolutionarily conserved sequence motif K120KAYVRL126 is involved in rRNA binding, we replaced the leucine residue at position 126 by either isoleucine or lysine. The first substitution did not affect binding. The second, however, completely abolished the specific rRNA binding capacity of the protein. Thus, Leu126, and possibly the whole conserved sequence motif, plays a key role in binding of L25 to 26 S rRNA.
我们采用一种新方法,利用体外合成的、[35S]甲硫氨酸标记的片段以及L25蛋白的点突变体,描绘了酵母核糖体蛋白L25中负责其与26S rRNA特异性结合的区域。通过与包含完整L25结合位点的体外转录生物素化酵母26S rRNA片段孵育,测试了这些突变多肽的rRNA结合能力。通过将rRNA - r蛋白复合物与链霉亲和素 - 琼脂糖结合,然后通过SDS/聚丙烯酰胺凝胶电泳分析结合的多肽或用三氯乙酸沉淀来测定蛋白质 - rRNA相互作用。我们的结果表明,L25与26S rRNA特异性相互作用所必需且充分的结构元件包含在氨基酸62和126界定的区域内。蛋白质的其余部分,特别是C末端的16个残基,虽然对结合不是必需的,但确实增强了其对26S rRNA的亲和力。为了测试如缺失实验结果所暗示的,进化上保守的序列基序K120KAYVRL126是否参与rRNA结合,我们将位置126的亮氨酸残基替换为异亮氨酸或赖氨酸。第一次替换不影响结合。然而,第二次替换完全消除了蛋白质的特异性rRNA结合能力。因此,Leu126,可能还有整个保守序列基序,在L25与26S rRNA的结合中起关键作用。