Liu R, Liebman S W
Laboratory for Molecular Biology (M/C 567), University of Illinois at Chicago 60607-7174, USA.
RNA. 1996 Mar;2(3):254-63.
Recent evidence suggests that ribosomal RNAs have functional roles in translation. We describe here a new ribosomal RNA mutation that causes translational suppression and antibiotic resistance in eukaryotic cells. Using random mutagenesis of the cloned ribosomal RNA gene and in vivo selection, we isolated a C --> U mutation in the universally conserved sarcin/ricin domain in Saccharomyces cerevisiae 25S ribosomal RNA. This mutation changes the putative CG pair, which closes the GAGA tetraloop in the sarcin/ricin domain, into a weaker UG pair without eliminating ribosomal sensitivity to ricin. We show that suppression of several UGA, UAG, and frameshift mutations is evident when a portion of the cellular ribosomal RNA contains the C --> U mutation. Cells that contain essentially all mutant ribosomal RNA grow only 10% slower than the wild-type, but show increased suppression as well as resistance to paramomycin, G418, and hygromycin, and sensitivity to cycloheximide. Our results provide genetic evidence for the participation of the sarcin/ricin loop in maintaining translational accuracy and are discussed in terms of a hypothesis that this ribosomal RNA region normally undergoes a conformational change during translation.
最近的证据表明核糖体RNA在翻译过程中具有功能性作用。我们在此描述一种新的核糖体RNA突变,它在真核细胞中导致翻译抑制和抗生素抗性。通过对克隆的核糖体RNA基因进行随机诱变并在体内进行筛选,我们在酿酒酵母25S核糖体RNA普遍保守的帚曲霉素/蓖麻毒素结构域中分离出一个C→U突变。该突变将假定的CG碱基对(其封闭帚曲霉素/蓖麻毒素结构域中的GAGA四环)转变为较弱的UG碱基对,而不消除核糖体对蓖麻毒素的敏感性。我们表明,当一部分细胞核糖体RNA含有C→U突变时,对几种UGA、UAG和移码突变的抑制作用很明显。基本上含有所有突变核糖体RNA的细胞生长速度仅比野生型慢10%,但显示出增强的抑制作用以及对巴龙霉素、G418和潮霉素的抗性,以及对环己酰亚胺的敏感性。我们的结果为帚曲霉素/蓖麻毒素环参与维持翻译准确性提供了遗传学证据,并根据该核糖体RNA区域在翻译过程中通常会发生构象变化的假说进行了讨论。