首页> 外文期刊>Genes and Development: a Journal Devoted to the Molecular Analysis of Gene Expression in Eukaryotes, Prokaryotes, and Viruses >Regulatory elements in eIF1A control the fidelity of start codon selection by modulating tRNA(i)(Met) binding to the ribosome.
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Regulatory elements in eIF1A control the fidelity of start codon selection by modulating tRNA(i)(Met) binding to the ribosome.

机译:eIF1A中的调控元件通过调节与核糖体结合的tRNA(i)(Met)来控制起始密码子选择的保真度。

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摘要

eIF1A is the eukaryotic ortholog of bacterial translation initiation factor IF1, but contains a helical domain and long unstructured N-terminal tail (NTT) and C-terminal tail (CTT) absent in IF1. Here, we identify elements in these accessory regions of eIF1A with dual functions in binding methionyl initiator tRNA (Met-tRNA(i)(Met)) to the ribosome and in selecting AUG codons. A pair of repeats in the eIF1A CTT, dubbed Scanning Enhancer 1 (SE1) and SE2, was found to stimulate recruitment of Met-tRNA(i)(Met) in the ternary complex (TC) with eIF2.GTP and also to block initiation at UUG codons. In contrast, the NTT and segments of the helical domain are required for the elevated UUG initiation occurring in SE mutants, and both regions also impede TC recruitment. Remarkably, mutations in these latter elements, dubbed scanning inhibitors SI1 and SI2, reverse the defects in TC loading and UUG initiation conferred by SE substitutions, showing that the dual functions of SE elements in TC binding and UUG suppression are mechanistically linked. It appears that SE elements enhance TC binding in a conformation conducive to scanning but incompatible with initiation, whereas SI elements destabilize this conformation to enable full accommodation of Met-tRNA(i)(Met) in the P site for AUG selection.
机译:eIF1A是细菌翻译起始因子IF1的真核直系同源基因,但包含一个螺旋结构域以及IF1中不存在的长长的非结构化N末端尾巴(NTT)和C末端尾巴(CTT)。在这里,我们确定eIF1A的这些辅助区域中的元素具有双重功能,将甲硫酰基引发剂tRNA(Met-tRNA(i)(Met))与核糖体结合并选择AUG密码子。发现在eIF1A CTT中有一对重复序列,称为扫描增强子1(SE1)和SE2,可以刺激eIF2.GTP在三元复合体(TC)中募集Met-tRNA(i)(Met),并阻止启动在UUG密码子上。相反,在SE突变体中发生的UUG起始升高需要NTT和螺旋结构域的片段,而且这两个区域也阻碍了TC募集。值得注意的是,后两种元素的突变被称为扫描抑制剂SI1和SI2,可以逆转SE取代赋予TC负载和UUG引发的缺陷,这表明SE元素在TC结合和UUG抑制中的双重功能是机械连接的。似乎SE元素以有利于扫描但与起始不相容的构象增强TC结合,而SI元素使该构象不稳定,从而使Met-tRNA(i)(Met)完全容纳于P位点以供AUG选择。

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