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Role of ribosome recycling factor (RRF) in translational coupling

机译:核糖体回收因子(RRF)在翻译偶联中的作用

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摘要

RNA phage GA coat and lysis protein expression are translationally coupled through an overlapping termination and initiation codon UAAUG. Essential for this coupling are the proximity of the termination codon of the upstream coat gene to the initiation codon of the lysis gene (either a <3 nucleotide separation or physical closeness through a possible hairpin structure) but not the Shine–Dalgarno sequence. This suggests that the ribosomes completing the coat gene translation are exclusively responsible for translation of the lysis gene. Inactivation of ribosome recycling factor (RRF), which normally releases ribosomes at the termination codon, did not influence the expression of the reporter gene fused to the lysis gene. This suggests the possibility that RRF may not release ribosomes from the junction UAAUG. However, RRF is essential for correct ribosomal recognition of the AUG codon as the initiation site for the lysis gene.
机译:RNA噬菌体GA外壳和裂解蛋白的表达通过重叠的终止密码子和起始密码子UAAUG进行翻译偶联。这种偶联的必要条件是上游外壳基因的终止密码子与裂解基因的起始密码子接近(<3核苷酸分离或通过可能的发夹结构的物理亲和力),而不是Shine-Dalgarno序列。这表明完成外壳基因翻译的核糖体专门负责裂解基因的翻译。核糖体再循环因子(RRF)的失活通常会在终止密码子处释放核糖体,但不会影响融合到裂解基因的报告基因的表达。这表明RRF可能不会从UAAUG连接释放核糖体的可能性。但是,RRF对于正确核糖体识别AUG密码子作为裂解基因的起始位点至关重要。

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