Meier N, Wagner R
Nucleic Acids Res. 1984 Feb 10;12(3):1473-87. doi: 10.1093/nar/12.3.1473.
Functionally active 70S ribosomes were chemically modified with dimethylsulfate (DMS) in the presence and absence of bound tRNA. The ribosomal 16S RNA and 23S RNA were extracted, separated and labeled radioactively at their 3'-ends. DMS modification sites within the last 200 nucleotides from the 3'-ends were investigated on sequencing gels, after borohydride reduction and aniline catalyzed strand scission of the isolated RNA's. tRNA binding caused enhanced reactivity at 9 nucleotide positions while three sites showed decreased reactivity in the 16S RNA. The effects of bound tRNA on the modification of 23S RNA were limited. Only one enhancement was observed in the presence of bound tRNA. mRNA binding alone showed two more sites with enhanced reactivity, however. The results are consistent with the view that the sequence 1400-1500 of the 16S RNA plays an important functional role in the translating ribosome and possibly constitutes part of the tRNA binding site.
在有或没有结合tRNA的情况下,用硫酸二甲酯(DMS)对功能活性70S核糖体进行化学修饰。提取核糖体的16S RNA和23S RNA,分离并在其3'末端进行放射性标记。在硼氢化还原和苯胺催化分离的RNA链断裂后,在测序凝胶上研究3'末端最后200个核苷酸内的DMS修饰位点。tRNA结合导致9个核苷酸位置的反应性增强,而16S RNA中有3个位点的反应性降低。结合的tRNA对23S RNA修饰的影响有限。在结合tRNA的情况下仅观察到一种增强。然而,单独的mRNA结合显示另外两个反应性增强的位点。这些结果与以下观点一致,即16S RNA的1400-1500序列在翻译核糖体中起重要的功能作用,并且可能构成tRNA结合位点的一部分。