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The role of GTP in transient splitting of 70S ribosomes by RRF (ribosome recycling factor) and EF-G (elongation factor G)

机译:GTP在通过RRF(核糖体回收因子)和EF-G(延伸因子G)瞬时分裂70S核糖体中的作用

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Ribosome recycling factor (RRF), elongation factor G (EF-G) and GTP split 70S ribosomes into subunits. Here, we demonstrated that the splitting was transient and the exhaustion of GTP resulted in re-association of the split subunits into 70S ribosomes unless IF3 (initiation factor 3) was present. However, the splitting was observed with sucrose density gradient centrifugation (SDGC) without IF3 if RRF, EF-G and GTP were present in the SDGC buffer. The splitting of 70S ribosomes causes the decrease of light scattering by ribosomes. Kinetic constants obtained from the light scattering studies are sufficient to account for the splitting of 70S ribosomes by RRF and EF-G/GTP during the lag phase for activation of ribosomes for the log phase. As the amount of 70S ribosomes increased, more RRF, EF-G and GTP were necessary to split 70S ribosomes. In the presence of a physiological amount of polyamines, GTP and factors, even 0.6 μM 70S ribosomes (12 times higher than the 70S ribosomes for routine assay) were split. Spermidine (2 mM) completely inhibited anti-association activity of IF3, and the RRF/EF-G/GTP-dependent splitting of 70S ribosomes.
机译:核糖体回收因子(RRF),延伸因子G(EF-G)和GTP将70S核糖体分成亚基。在这里,我们证明分裂是短暂的,GTP的耗尽导致分裂亚基重新缔合成70S核糖体,除非存在IF3(起始因子3)。但是,如果SDGC缓冲液中存在RRF,EF-G和GTP,则在不带IF3的蔗糖密度梯度离心(SDGC)中观察到分裂。 70S核糖体的分裂导致核糖体散射光的减少。从光散射研究获得的动力学常数足以解释在滞后阶段,RRF和EF-G / GTP对70S核糖体的分裂,从而使对数期的核糖体活化。随着70S核糖体数量的增加,更多的RRF,EF-G和GTP是分裂70S核糖体所必需的。在存在生理量的多胺,GTP和因子的情况下,甚至会裂解0.6μM的70S核糖体(比常规测定的70S核糖体高12倍)。亚精胺(2 mM)完全抑制IF3的抗缔合活性以及RRF / EF-G / GTP依赖性的70S核糖体分裂。

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