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Fast recycling of Escherichia coli ribosomes requires both ribosome recycling factor (RRF) and release factor RF3.

机译:大肠杆菌核糖体的快速回收需要核糖体回收因子(RRF)和释放因子RF3。

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摘要

A complete translation system has been assembled from pure initiation, elongation and termination factors as well as pure aminoacyl-tRNA synthetases. In this system, ribosomes perform repeated rounds of translation of short synthetic mRNAs which allows the time per translational round (the recycling time) to be measured. The system has been used to study the influence of release factor RF3 and of ribosome recycling factor RRF on the rate of recycling of ribosomes. In the absence of both RF3 and RRF, the recycling time is approximately 40 s. This time is reduced to approximately 30 s by the addition of RF3 alone and to approximately 15 s by the addition of RRF alone. When both RF3 and RRF are added to the translation system, the recycling time drops to <6 s. Release factor RF3 is seen to promote RF1 cycling between different ribosomes. The action of RRF is shown to depend on the concentration of elongation factor-G. Even in the presence of RRF, ribosomes do not leave the mRNA after termination, but translate the same mRNA several times. This shows that RRF does not actively eject mRNA from the terminating ribosome. It is proposed that terminating ribosomes become mobile on mRNA and ready to enter the next translation round only after two distinct steps, catalysed consecutively by RF3 and RRF, which are slow in the absence of these factors.
机译:一个完整的翻译系统已经由纯起始,延伸和终止因子以及纯氨酰基-tRNA合成酶组成。在该系统中,核糖体执行短合成mRNA的重复翻译,从而可以测量每个翻译回合的时间(回收时间)。该系统已用于研究释放因子RF3和核糖体回收因子RRF对核糖体回收率的影响。在没有RF3和RRF的情况下,回收时间约为40 s。通过单独添加RF3,此时间减少到大约30 s,通过单独添加RRF,此时间减少到大约15 s。将RF3和RRF都添加到翻译系统后,回收时间降至<6 s。释放因子RF3可以促进不同核糖体之间的RF1循环。显示RRF的作用取决于伸长因子-G的浓度。即使存在RRF,核糖体在终止后也不会离开mRNA,而是多次翻译相同的mRNA。这表明RRF不能主动从终止核糖体中弹出mRNA。建议终止核糖体在mRNA上可移动,并且仅在经过RF3和RRF连续催化的两个不同步骤后才准备进入下一轮翻译,这在没有这些因素的情况下很慢。

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