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Secondary structure of bacteriophage T4 gene 60 mRNA: Implications for translational bypassing

机译:噬菌体T4基因60 mRNA的二级结构:对翻译旁路的影响。

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Translational bypassing is a unique phenomenon of bacteriophage T4 gene 60 mRNA wherein the bacterial ribosome produces a single polypeptide chain froma discontinuous open reading frame (ORF). Upon reaching the 50-nucleotide untranslated region, or coding gap, the ribosome either dissociates or bypasses the interruption to continue translating the remainder of the ORF, generating a subunit of a type II DNA topoisomerase. Mutational and computational analyses have suggested that a compact structure, including a stable hairpin, forms in the coding gap to induce bypassing, yet direct evidence is lacking. Here we have probed the secondary structure of gene 60 mRNA with both Tb3+ ions and the selective 2'-hydroxyl acylation analyzed by primer extension (SHAPE) reagent 1M7 under conditions where bypassing is observed. The resulting experimentally informed secondary structure models strongly support the presence of the predicted coding gap hairpin and highlight the benefits of using Tb 3+ as a second, complementary probing reagent. Contrary to several previously proposed models, however, the rest of the coding gap is highly reactive with both probing reagents, suggesting that it forms only a short stem.loop. Mutational analyses coupled with functional assays reveal that two possible base-pairings of the coding gap with other regions of the mRNA are not required for bypassing. Such structural autonomy of the coding gap is consistent with its recently discovered role as a mobile genetic element inserted into gene 60 mRNA to inhibit cleavage by homing endonuclease MobA.
机译:翻译旁路是噬菌体T4基因60 mRNA的独特现象,其中细菌核糖体从不连续的开放阅读框(ORF)产生单个多肽链。到达50个核苷酸的非翻译区或编码缺口后,核糖体解离或绕过中断,继续翻译ORF的其余部分,生成II型DNA拓扑异构酶的亚基。突变和计算分析表明,在编码间隙中形成了一个紧凑的结构(包括稳定的发夹)以诱导绕过,但缺乏直接的证据。在这里,我们用Tb3 +离子和通过引物延伸(SHAPE)试剂1M7在观察到旁路的条件下分析的选择性2'-羟基酰化作用,探索了基因60 mRNA的二级结构。所得的具有实验信息的二级结构模型强烈支持预测的编码缺口发夹的存在,并突出显示了使用Tb 3+作为第二种互补探测试剂的优势。然而,与几个先前提出的模型相反,其余的编码空位对两种探测试剂均具有高反应性,表明它仅形成一个短的茎环。突变分析与功能测定相结合后发现,绕过编码序列不需要与mRNA的其他区域进行两个可能的碱基配对。编码间隙的这种结构自主性与其最近发现的作为插入基因60 mRNA的移动遗传元件的功能相一致,以通过归巢内切核酸酶MobA抑制切割。

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