Stern S, Wilson R C, Noller H F
J Mol Biol. 1986 Nov 5;192(1):101-10. doi: 10.1016/0022-2836(86)90467-5.
We have examined the effect of binding ribosomal protein S4 to 16 S rRNA on the susceptibility of the RNA to a variety of chemical and enzymatic probes. We have used dimethyl sulfate to probe unpaired adenines (at N-1) and cytosines (at N-3), kethoxal to probe unpaired guanines (at N-1 and N-2) and cobra venom (V1) ribonuclease as a probe of base-paired regions of 16 S rRNA. Sites of attack by the probes were identified by primer extension using synthetic oligodeoxynucleotides. Comparison of probing results for naked and S4-bound rRNA shows: Protein S4 protects a relatively compact region of the 5' domain of 16 S rRNA from chemical and enzymatic attack. This region is bounded by nucleotides 27 to 47 and 394 to 556, and has a secondary structure characterized by the junction of five helical elements. Phylogenetically conserved irregular features (bulged nucleotides, internal loops and flanking unpaired nucleotides) and helical phosphodiester bonds of four of the helices are specifically protected in the S4-RNA complex. We conclude that this is the major, and possibly sole region of contact between 16 S rRNA and S4. Many of the S4-dependent changes mimic those observed on assembly of 16 S rRNA into 30 S ribosomal subunits. Binding of S4 causes enhanced chemical reactivity coupled with protection from V1 nuclease outside the S4 junction region in the 530, 720 and 1140 loops. We interpret these results as indicative of loss of structure, and suggest that S4 binding causes disruption of adventitious pairing in these regions, possibly by stabilizing the geometry of the RNA such that these interactions are prevented from forming.
我们研究了核糖体蛋白S4与16 S rRNA结合对该RNA对多种化学和酶促探针敏感性的影响。我们使用硫酸二甲酯来探测未配对的腺嘌呤(在N-1位)和胞嘧啶(在N-3位),乙二醛来探测未配对的鸟嘌呤(在N-1和N-2位),以及眼镜蛇毒(V1)核糖核酸酶作为16 S rRNA碱基配对区域的探针。通过使用合成寡脱氧核苷酸进行引物延伸来确定探针的攻击位点。对裸露的和与S4结合的rRNA的探测结果比较显示:蛋白S4保护16 S rRNA 5'结构域中一个相对紧凑的区域免受化学和酶促攻击。该区域由核苷酸27至47以及394至556界定,其二级结构的特征是五个螺旋元件的连接。在S4-RNA复合物中,四个螺旋的系统发育保守不规则特征(凸起的核苷酸、内环和侧翼未配对核苷酸)以及螺旋磷酸二酯键受到特异性保护。我们得出结论,这是16 S rRNA与S4之间主要的,可能也是唯一的接触区域。许多依赖S4的变化类似于16 S rRNA组装到30 S核糖体亚基时观察到的变化。S4的结合导致化学反应性增强,同时在530、720和1140环的S4连接区域之外免受V1核酸酶的攻击。我们将这些结果解释为结构丧失的指示,并表明S4的结合可能通过稳定RNA的几何结构从而阻止这些相互作用的形成,导致这些区域中偶然配对的破坏。