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An RNA pseudoknot and an optimal heptameric shift site are required for highly efficient ribosomal frameshifting on a retroviral messenger RNA.

机译:RNA假结和最佳七聚体转移位点是逆转录病毒信使RNA上高效核糖体移码所必需的。

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摘要

Synthesis of the pol gene products of most retroviruses requires ribosomes to shift frame once or twice in the -1 direction while translating gag-pol mRNA. The viral signals for frameshifting include a heptanucleotide sequence on which the shift occurs and higher-order RNA structure just downstream of the shift site. We have made site-directed mutations in two stems (S1 and S2) of a putative RNA pseudoknot that begins 7 nucleotides 3' of the previously identified shift site (A AAA AAC) in the gag-pro region of mouse mammary tumor virus (MMTV) RNA. The mutants confirm the predicted structure, show that loss of either S1 or S2 impairs frameshifting, and exclude alternative RNA structures as significant for frameshifting. The importance of the MMTV pseudoknot has been further demonstrated by showing that shift sites from two other retroviruses function more efficiently in the position of the MMTV site than in their native contexts. However, the MMTV pseudoknot cannot promote detectable frameshifting in the absence of a recognizable upstream shift site. In addition, the species of tRNA that reads the second codon in the shift site appears to be a critical determinant, since changing the 7th nucleotide in the MMTV gag-pro shift site from C to A, U, or G severely impairs frameshifting.
机译:大多数逆转录病毒的pol基因产物的合成需要核糖体在翻译gag-pol mRNA的同时在-1方向上移动一两次。用于移码的病毒信号包括发生移位的七核苷酸序列和紧接移位位点下游的高级RNA结构。我们在推定的RNA假结的两个茎(S1和S2)中进行了定点突变,该假结始于小鼠乳腺肿瘤病毒(MMTV)的gag-pro区中先前确定的移位位点(A AAA AAC)的7个核苷酸3'。 )RNA。突变体证实了预测的结构,表明S1或S2的缺失会损害移码,并排除对移码重要的替代RNA结构。 MMTV假结的重要性已通过显示来自其他两种逆转录病毒的转移位点在MMTV站点的位置比在其本机环境中更有效地发挥作用而得到进一步证明。但是,在缺少可识别的上游移位位点的情况下,MMTV伪结无法促进可检测的移码。另外,在移位位点读取第二个密码子的tRNA的种类似乎是一个关键的决定因素,因为将MMTV gag-pro移位位点的第7个核苷酸从C改变为A,U或G会严重损害移码。

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