Ulbrich N, Chan Y L, Huber P W, Wool I G
J Biol Chem. 1982 Oct 10;257(19):11353-7.
The rat liver ribosomal protein L6 binds to 5 S and 5.8 S rRNAs, and to initiator and elongator tRNAs. Experiments were carried out to determine if the protein has separate domains for binding each of these nucleic acids. For that purpose, nucleic acid.L6 complexes were immobilized on Sepharose and their capacity to retain 32P-labeled nucleic acids was assessed. A 5 S rRNA.L6 affinity complex binds 5.8 S [32P]rRNA indicating that L6 has separate binding sites for 5 S and 5.8 S rRNAs. A 5 S rRNA.L6 affinity complex also binds [32P]tRNAPhe, and unlabeled 5.8 S rRNA does not compete with the radioactive tRNA for binding to L6, suggesting that the ribosomal protein has a third, distinct, nucleic acid-binding domain. To determine if L6 has separate sites for the binding of elongator and initiator tRNAs, tRNAPhe. L6 and tRNAfMet.L6 affinity columns were constructed. The tRNAPhe.L6 affinity complex binds [32P]tRNAfMet, and the tRNAfMet.L6 complex binds [32P]tRNAPhe, suggesting there are distinct sites on L6 for the interaction with initiator and elongator tRNAs; however, competition experiments imply that, while there are two sites for binding tRNAs to L6, the sites do not discriminate between initiator and elongator tRNAs.
大鼠肝脏核糖体蛋白L6可与5 S和5.8 S核糖体RNA以及起始tRNA和延伸tRNA结合。开展了实验以确定该蛋白是否具有分别与这些核酸结合的不同结构域。为此,将核酸-L6复合物固定在琼脂糖凝胶上,并评估其保留32P标记核酸的能力。5 S核糖体RNA-L6亲和复合物可结合5.8 S [32P]核糖体RNA,这表明L6具有与5 S和5.8 S核糖体RNA结合的不同位点。5 S核糖体RNA-L6亲和复合物还可结合[32P]苯丙氨酸tRNA,未标记的5.8 S核糖体RNA不能与放射性tRNA竞争结合L6,这表明该核糖体蛋白具有第三个不同的核酸结合结构域。为了确定L6是否具有分别与延伸tRNA和起始tRNA结合的位点,构建了苯丙氨酸tRNA-L6和甲硫氨酸起始tRNA-L6亲和柱。苯丙氨酸tRNA-L6亲和复合物可结合[32P]甲硫氨酸起始tRNA,甲硫氨酸起始tRNA-L6复合物可结合[32P]苯丙氨酸tRNA,这表明L6上存在与起始tRNA和延伸tRNA相互作用的不同位点;然而,竞争实验表明,虽然存在两个tRNA与L6结合的位点,但这些位点不能区分起始tRNA和延伸tRNA。