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Structure–function relationship in the ‘termination upstream ribosomal binding site’ of the calicivirus rabbit hemorrhagic disease virus

机译:杯状病毒兔出血性疾病病毒终止上游核糖体结合位点中的结构-功能关系

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摘要

Caliciviruses use a termination/reinitiation mechanism for translation of their minor capsid protein VP2. A sequence element of about 80 nucleotides denoted ‘termination upstream ribosomal binding site’ (TURBS) is crucial for reinitiation. RNA secondary structure probing and computer aided secondary structure prediction revealed a rather low degree of secondary structure determinants for the TURBS of the rabbit hermorrhagic disease virus. Mutation analysis showed that prevention of duplex formation had major impact on the VP2 expression levels. Restoration of complementarity of the respective sequences by reciprocal mutation at least partially restored reinitiating rates. Synthetic TURBS structures preserving only the secondary structure forming sequences and the known short motifs important for TURBS function were found to drive reinitiation when the altered sequence could be predicted to allow establishment of the crucial secondary structures of the TURBS.
机译:杯状病毒使用终止/重新初始化机制来翻译其次要衣壳蛋白VP2。大约80个核苷酸的序列元素被称为“终止上游核糖体结合位点”(TURBS),对于重新初始化至关重要。 RNA二级结构探测和计算机辅助的二级结构预测表明,兔出血性病病毒的TURBS二级结构决定因素的程度较低。突变分析表明,防止双链体形成对VP2表达水平有重大影响。通过相互突变来恢复各个序列的互补性,至少部分地恢复了起始速率。当可以预测改变​​的序列以允许建立TURBS的关键二级结构时,发现仅保留二级结构形成序列和已知的对于TURBS功能重要的短基序的合成TURBS结构可驱动重新初始化。

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