Kime M J, Moore P B
Biochemistry. 1984 Apr 10;23(8):1688-95. doi: 10.1021/bi00303a017.
The complexes of three variants of Escherichia coli 5S RNA with ribosomal protein L25 have been studied by high-field proton nuclear magnetic resonance. A spectroscopic method is demonstrated to help distinguish the macromolecular sources of proton resonances in nucleoprotein complexes. The effects of L25 binding on the three RNAs tested were small; the presence of the L25 did not strongly influence the conformation of the RNA. The interaction of L25 with 5S RNA produced modest, but distinctive, alterations in the protein spectrum, in both the aromatic region and the upfield spectrum. As judged by these changes, the mechanism of binding was the same in all three cases. The changes seen in the spectrum of L25 indicate that its conformation is not altered in a major way upon RNA binding. Arginine residues appear to be involved in the binding mechanism. Intercalation of L25 aromatic residues with RNA bases does not appear to play a role in the interaction.
通过高场质子核磁共振研究了大肠杆菌5S RNA的三种变体与核糖体蛋白L25的复合物。证明了一种光谱方法有助于区分核蛋白复合物中质子共振的大分子来源。L25结合对所测试的三种RNA的影响很小;L25的存在并没有强烈影响RNA的构象。L25与5S RNA的相互作用在蛋白质光谱的芳香区和高场光谱中都产生了适度但独特的变化。从这些变化判断,在所有三种情况下结合机制都是相同的。L25光谱中看到的变化表明,其构象在与RNA结合时没有发生重大改变。精氨酸残基似乎参与了结合机制。L25芳香族残基与RNA碱基的嵌入似乎在相互作用中不起作用。