Shpanchenko O V, Dontsova O A, Bogdanov A A, Nierhaus K H
Department of Chemistry, Moscow State University, Moscow, Russia.
RNA. 1998 Sep;4(9):1154-64. doi: 10.1017/s1355838298980359.
The protection patterns of 5S rRNA in solution, within the ribosomal 50S subunit, 70S ribosomes, and functional complexes, were assessed with the phosphorothioate method. About 20% of the analyzed positions (G9-G107) showed strong assembly defects: A phosphorothioate at one of these positions significantly impaired the incorporation of 5S rRNA into 50S particles. The reverse has also been observed: A phosphorothioate is preferred over a phosphate residue in the assembly process at a few positions. The results further demonstrate that 5S rRNA undergoes conformational changes during the assembly in the central protuberance of the 50S subunit and upon association with the small ribosomal subunit forming a 70S ribosome. In striking contrast, when the 70S ribosomes are once formed, the contact pattern of the 5S rRNA is the same in various functional states such as initiation-like complexes and pre- and posttranslocational states.
采用硫代磷酸酯法评估了溶液中、核糖体50S亚基内、70S核糖体以及功能复合物中5S rRNA的保护模式。约20%的分析位点(G9 - G107)显示出强烈的组装缺陷:这些位点之一的硫代磷酸酯显著损害了5S rRNA掺入50S颗粒。相反的情况也有观察到:在少数几个位点的组装过程中,硫代磷酸酯比磷酸残基更受青睐。结果进一步表明,5S rRNA在50S亚基中央突起的组装过程中以及与小核糖体亚基结合形成70S核糖体时会发生构象变化。与之形成鲜明对比的是,当70S核糖体一旦形成,5S rRNA在各种功能状态下,如起始样复合物以及转位前和转位后的状态,其接触模式是相同的。