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Transient idling of posttermination ribosomes ready to reinitiate protein synthesis

机译:终止核糖体的短暂空载准备重新启动蛋白质合成

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The fate of ribosomes between termination and initiation during protein synthesis is very basic, yet poorly understood. Here we found that translational reinitiation of the alkaline phosphatase gene occurs in Escherichia coli from an internal methionine codon when the authentic translation is prematurely terminated at a nonsense codon that is within seven codons upstream of the reinitiation codon (which we refer to as "reinitiation window"). Changing the reading frame downstream of the stop codon did not abolish the reinitiation, while inactivating the upstream initiation codon abolished the reinitiation. Moreover, depletion of the ribosome recycling factor (RRF), which disassembles post-termination ribosomes in conjunction with elongation factor G, did not influence the observed reinitiation. These findings suggest that post-termination ribosomes can undergo a transient idling state ready to reinitiate protein synthesis even in the absence of the Shine-Dalgarno (SD) sequence within the reinitiation window by evading disengagement from the mRNA.
机译:蛋白质合成过程中终止和起始之间核糖体的命运是非常基本的,但了解甚少。在这里,我们发现,当真正的翻译在重新密码子上游七个密码子以内的无义密码子处过早终止时,碱性磷酸酶基因的翻译重新初始化发生在大肠杆菌中,来自内部蛋氨酸密码子(我们称为“重新初始化窗口” ”)。改变终止密码子下游的阅读框并没有取消重新启动,而使上游启动密码子失活则取消了重新启动。此外,核糖体回收因子(RRF)的耗竭与终止因子G一起分解,可终止终止后的核糖体,但并不影响观察到的重新初始化。这些发现表明,即使在重新启动窗口中没有Shine-Dalgarno(SD)序列,也可以通过逃避mRNA的脱离,使终止后的核糖体处于短暂的空转状态,准备重新启动蛋白质合成。

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