首页> 外文期刊>The FEBS journal >Ribosomal protein L7/L12 is required for GTPase translation factors EF-G, RF3, and IF2 to bind in their GTP state to 70S ribosomes
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Ribosomal protein L7/L12 is required for GTPase translation factors EF-G, RF3, and IF2 to bind in their GTP state to 70S ribosomes

机译:GTP酶平移因子EF-G,RF3和IF2需要核糖体蛋白L7 / L12,以将其GTP状态结合至70s核糖体

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摘要

Ribosomal protein L7/L12 is associated with translation initiation, elongation, and termination by the 70S ribosome. The guanosine 5 triphosphate hydrolase (GTPase) activity of elongation factor G (EF-G) requires the presence of L7/L12, which is critical for ribosomal translocation. Here, we have developed new methods for the complete depletion of L7/L12 from Escherichia coli 70S ribosomes to analyze the effect of L7/L12 on the activities of the GTPase factors EF-G, RF3, IF2, and LepA. Upon removal of L7/L12 from ribosomes, the GTPase activities of EF-G, RF3, and IF2 decreased to basal levels, while the activity of LepA decreased marginally. Upon reconstitution of ribosomes with recombinant L12, the GTPase activities of all GTPases returned to full activity. Moreover, ribosome binding assays indicated that EF-G, RF3, and IF2 require L7/L12 for stable binding in the GTP state, and LepA retained > 50% binding. Lastly, an EF-GG truncation mutant possessed ribosome-dependent GTPase activity, which was insensitive to L7/L12. Our results indicate that L7/L12 is required for stable binding of ribosome-dependent GTPases that harbor direct interactions to the L7/L12 C-terminal domains, either through a G domain (EF-G, RF3) or a unique N-terminal domain (IF2). Furthermore, we hypothesize this interaction is concomitant with counterclockwise ribosomal intersubunit rotation, which is required for translocation, initiation, and post-termination.
机译:核糖体蛋白L7 / L12与70S核糖体的翻译引发,伸长率和终止有关。鸟苷5伸长因子G(EF-G)的三磷酸水解酶(GTP酶)活性需要存在L7 / L12,这对于核糖体易位至关重要。在这里,我们已经开发了从大肠杆菌70S核糖体的L7 / L12的完全耗尽的新方法,分析L7 / L12对GTP酶因子EF-G,RF3,IF2和LEPA的活性的影响。在从核糖体中移除L7 / L12,EF-G,RF3和IF2的GTP酶活性降低至基础水平,而LEPA的活性略微下降。在用重组L12重构核糖体时,所有GTP酶的GTP酶活性返回全部活性。此外,核糖体结合测定表明,EF-G,RF3和IF2需要L7 / L12在GTP状态下稳定结合,并且LEPA保留> 50%结合。最后,具有核糖体依赖性GTP酶活性的EF-GG截断突变体,其对L7 / L12不敏感。我们的结果表明,核糖体依赖性GTP酶的稳定结合需要L7 / L12,其通过G结构域(EF-G,RF3)或唯一的N-末端域含有直接相互作用的核糖体依赖性GTP酶的稳定结合(IF2)。此外,我们假设这种相互作用伴随着逆时针核糖体IntersubUnit旋转,这是易位,启动和后终止所需的旋转。

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