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Complementary roles of initiation factor 1 and ribosome recycling factor in 70S ribosome splitting

机译:起始因子1和核糖体再循环因子在70S核糖体分裂中的互补作用

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摘要

We demonstrate that ribosomes containing a messenger RNA (mRNA) with a strong Shine–Dalgarno sequence are rapidly split into subunits by initiation factors 1 (IF1) and 3 (IF3), but slowly split by ribosome recycling factor (RRF) and elongation factor G (EF-G). Post-termination-like (PTL) ribosomes containing mRNA and a P-site-bound deacylated transfer RNA (tRNA) are split very rapidly by RRF and EF-G, but extremely slowly by IF1 and IF3. Vacant ribosomes are split by RRF/EF-G much more slowly than PTL ribosomes and by IF1/IF3 much more slowly than mRNA-containing ribosomes. These observations reveal complementary splitting of different ribosomal complexes by IF1/IF3 and RRF/EF-G, and suggest the existence of two major pathways for ribosome splitting into subunits in the living cell. We show that the identity of the deacylated tRNA in the PTL ribosome strongly affects the rate by which it is split by RRF/EF-G and that IF3 is involved in the mechanism of ribosome splitting by IF1/IF3 but not by RRF/EF-G. With support from our experimental data, we discuss the principally different mechanisms of ribosome splitting by IF1/IF3 and by RRF/EF-G.
机译:我们证明,包含具有强Shine-Dalgarno序列的信使RNA(mRNA)的核糖体可被起始因子1(IF1)和3(IF3)迅速分成亚基,但被核糖体回收因子(RRF)和延伸因子G缓慢分裂(EF-G)。含有mRNA和P位点结合的脱酰转移RNA(tRNA)的终止后样(PTL)核糖体被RRF和EF-G迅速分裂,但被IF1和IF3分裂得非常慢。空位核糖体被RRF / EF-G的分裂速度比PTL核糖体慢得多,而IF1 / IF3的分裂速度比含mRNA的核糖体慢得多。这些观察结果揭示了不同的核糖体复合物通过IF1 / IF3和RRF / EF-G的互补分裂,并暗示了核糖体在活细胞中分裂成亚基的两个主要途径的存在。我们显示,PTL核糖体中脱酰tRNA的身份强烈影响其被RRF / EF-G分裂的速率,并且IF3参与了由IF1 / IF3而不是RRF / EF-R分裂核糖体的机制。 G。在实验数据的支持下,我们讨论了通过IF1 / IF3和RRF / EF-G进行核糖体分裂的主要不同机制。

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