Macbeth M R, Wool I G
Department of Biochemistry and Molecular Biology, The University of Chicago, Chicago, IL, 60637, USA.
J Mol Biol. 1999 Jan 15;285(2):567-80. doi: 10.1006/jmbi.1998.2337.
The sarcin/ricin domain in 23 S/28 S rRNA is crucial for ribosome function, since it constitutes at least part of the binding site for the elongation factors and hence is essential for binding aminoacyl-tRNA and for translocation. The domain is also the site of action of ricin and sarcin and analysis of the effect of mutations in the RNA on recognition by the cytotoxins has helped to define the structure and to understand the function of the region. We have constructed deletions, separately, of pairs of non-conserved, juxtaposed but non-hydrogen-bonded nucleotides that correspond to C4317 and C4331, and to U4316 and C4332, in an oligoribonucleotide that mimics the sarcin/ricin domain in rat 28 S rRNA. The deletions had no effect on the depurination of A4324 by ricin nor on the cleavage of the phosphodiester bond on the 3' side of G4325 by sarcin. However, simultaneous deletion of the four nucleotides decreased cleavage by sarcin but did not affect depurination by ricin. Removal of the non-canonical A4318.A4330 pair abolished recognition by both toxins. Deletion from oligoribonucleotides, that reproduce the sarcin/ricin domain of Escherichia coli 23 S rRNA, of U2653 and C2667 (equivalent to U4316, C4317 and C4331, C4332 in 28 S rRNA), or substitution of guanosine for U2653 (designed to form a Watson-Crick G2653.C2667 pair), reduced cleavage by sarcin whereas depurination by ricin was slightly increased. An increase in the stability of the mutant oligoribonucleotides may be the basis of the impairment in sarcin action. The tm for the wild-type RNA is 60 degreesC; for the double-deletion mutant U2653Delta/C2667Delta it is 65 degreesC; and for the U2653G transversion it is 69 degreesC. Expression of a mutant 23 S rRNA gene lacking U2653 and C2667 is lethal and a U2653G transversion mutation impairs growth. The mutant ribosomes are less active in protein synthesis than the wild-type and ribosomes with the U2653G mutation are resistant to sarcin. The binding of EF-G to oligoribonucleotides with a U2653/C2667 double deletion is reduced and an effect on the affinity of the factor for the sarcin/ricin domain may account in part for the decrease in ribosome efficiency. The results stress the potential importance in rRNA structure and function of non-conserved nucleotides, and suggest that the sarcin/ricin domain in ribosomes requires a region of structural flexibility for optimal efficiency.
23S/28S核糖体RNA中的帚曲霉素/蓖麻毒素结构域对核糖体功能至关重要,因为它至少构成了延伸因子的部分结合位点,因此对于氨酰基tRNA的结合及转位必不可少。该结构域也是帚曲霉素和蓖麻毒素的作用位点,对RNA中突变影响细胞毒素识别的分析有助于确定该区域的结构并理解其功能。我们分别构建了缺失突变体,缺失在模拟大鼠28S核糖体RNA中帚曲霉素/蓖麻毒素结构域的寡核糖核苷酸中,对应于C4317和C4331以及U4316和C4332的成对非保守、相邻但未形成氢键的核苷酸。这些缺失对蓖麻毒素使A4324脱嘌呤的作用以及帚曲霉素对G4325 3'侧磷酸二酯键的切割均无影响。然而,同时缺失这四个核苷酸会减少帚曲霉素的切割,但不影响蓖麻毒素的脱嘌呤作用。去除非规范的A4318·A4330碱基对会消除两种毒素的识别。从模拟大肠杆菌23S核糖体RNA帚曲霉素/蓖麻毒素结构域的寡核糖核苷酸中缺失U2653和C2667(相当于28S核糖体RNA中的U4316、C4317和C4331、C4332),或将U2653替换为鸟苷(设计形成沃森-克里克G2653·C2667碱基对),会减少帚曲霉素的切割,而蓖麻毒素的脱嘌呤作用略有增加。突变寡核糖核苷酸稳定性的增加可能是帚曲霉素作用受损的基础。野生型RNA的解链温度为60℃;双缺失突变体U2653Δ/C2667Δ为65℃;U2653G颠换突变体为69℃。缺乏U2653和C2667的突变23S核糖体RNA基因的表达是致死性的,U2653G颠换突变会损害生长。突变核糖体在蛋白质合成中的活性低于野生型,具有U2653G突变的核糖体对帚曲霉素具有抗性。EF-G与U2653/C2667双缺失的寡核糖核苷酸的结合减少,该因子对帚曲霉素/蓖麻毒素结构域亲和力的改变可能部分解释了核糖体效率的降低。这些结果强调了非保守核苷酸在核糖体RNA结构和功能中的潜在重要性,并表明核糖体中的帚曲霉素/蓖麻毒素结构域需要一定的结构灵活性区域以实现最佳效率。