eIF1 and eIF5 dynamically control translation start site fidelity

Rosslyn Grosely, Carlos Alvarado, Ivaylo P. Ivanov, Oliver B. Nicholson, Joseph D. Puglisi, Thomas E. Dever, Christopher P. Lapointe
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Abstract

Human translation initiation requires accurate recognition of translation start sites. While AUG codons are canonical start sites, non-AUG codons are also used, typically with lower efficiency. The initiator tRNA and initiation factors eIF1 and eIF5 control recognition. How they distinguish different start sites yet allow flexible recognition remains unclear. Here we used real-time single-molecule assays and an in vitro reconstituted human system to reveal how eIF1 and eIF5 direct start site selection. eIF1 binds initiation complexes in two modes: stable binding during scanning, followed by transient, concentration-dependent rebinding after start site recognition. Termination of eIF1 rebinding requires transient and concentration-dependent binding by eIF5, which allows the formation of translation competent ribosomes. Non-AUG start sites differentially stabilize eIF1 and destabilize eIF5 binding, blocking initiation at multiple points. We confirmed these opposing effects in human cells. Collectively, our findings uncover that eIF1 and eIF5 directly compete to bind initiation complexes and illuminate how their dynamic interplay tunes the fidelity of start site recognition, which has broad connections to health and disease.

Abstract Image

eIF1和eIF5动态控制翻译起始站点保真度
人工翻译起始需要准确识别翻译起始点。虽然AUG密码子是典型的起始位点,但非AUG密码子也被使用,通常效率较低。启动物tRNA和启动因子eIF1和eIF5控制识别。它们如何区分不同的起始点并允许灵活识别仍不清楚。本研究采用实时单分子检测和体外重组人体系统来揭示eIF1和eIF5如何直接启动位点选择。eIF1以两种模式与起始复合物结合:扫描时的稳定结合,以及识别起始位点后的瞬时、浓度依赖性重结合。终止eIF1的再结合需要eIF5的瞬时和浓度依赖性结合,这允许形成翻译能力核糖体。非aug起始位点不同地稳定eIF1和破坏eIF5的结合,在多个点阻断起始。我们在人类细胞中证实了这些相反的作用。总的来说,我们的发现揭示了eIF1和eIF5直接竞争结合起始复合物,并阐明了它们的动态相互作用如何调节起始位点识别的保真度,这与健康和疾病有广泛的联系。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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