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Altering SARS Coronavirus Frameshift Efficiency Affects Genomic and Subgenomic RNA Production

机译:改变SARS冠状病毒移码效率影响基因组和亚基因组RNA的产生。

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摘要

In previous studies, differences in the amount of genomic and subgenomic RNA produced by coronaviruses with mutations in the programmed ribosomal frameshift signal of ORF1a/b were observed. It was not clear if these differences were due to changes in genomic sequence, the protein sequence or the frequency of frameshifting. Here, viruses with synonymous codon changes are shown to produce different ratios of genomic and subgenomic RNA. These findings demonstrate that the protein sequence is not the primary cause of altered genomic and subgenomic RNA production. The synonymous codon changes affect both the structure of the frameshift signal and frameshifting efficiency. Small differences in frameshifting efficiency result in dramatic differences in genomic RNA production and TCID50 suggesting that the frameshifting frequency must stay above a certain threshold for optimal virus production. The data suggest that either the RNA sequence or the ratio of viral proteins resulting from different levels of frameshifting affects viral replication.
机译:在先前的研究中,观察到冠状病毒产生的基因组和亚基因组RNA量存在差异,ORF1a / b的程序化核糖体移码信号中存在突变。尚不清楚这些差异是否是由于基因组序列,蛋白质序列或移码频率的变化引起的。在这里,具有同义密码子变化的病毒显示产生不同比例的基因组和亚基因组RNA。这些发现证明蛋白质序列不是改变基因组和亚基因组RNA产生的主要原因。同义密码子更改会影响移码信号的结构和移码效率。移码效率的微小差异会导致基因组RNA产生量的巨大差异,而TCID50则表明,移码频率必须保持在一定的阈值以上才能产生最佳病毒。数据表明,RNA序列或不同水平移码产生的病毒蛋白比率均会影响病毒复制。

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