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一个 eIF2β 与 eIF1 和 Met-tRNAi 的相互作用网络促进了翻译起始复合物对正确起始密码子的选择。

A network of eIF2β interactions with eIF1 and Met-tRNAi promotes accurate start codon selection by the translation preinitiation complex.

机构信息

Division of Molecular and Cellular Biology, Eunice Kennedy Shriver National Institute of Child Health and Human Development, NIH, Bethesda, MD 20892, USA.

出版信息

Nucleic Acids Res. 2019 Mar 18;47(5):2574-2593. doi: 10.1093/nar/gky1274.

Abstract

In translation initiation, a 43S preinitiation complex (PIC) containing eIF1 and a ternary complex (TC) of GTP-bound eIF2 and Met-RNAi scans the mRNA for the start codon. AUG recognition triggers eIF1 release and rearrangement from an open PIC conformation to a closed state with more tightly-bound Met-tRNAi (PIN state). Cryo-EM models reveal eIF2β contacts with eIF1 and Met-tRNAi exclusive to the open complex that should destabilize the closed state. eIF2β or eIF1 substitutions disrupting these contacts increase initiation at UUG codons, and compound substitutions also derepress translation of GCN4, indicating slower TC recruitment. The latter substitutions slow TC loading while stabilizing TC binding at UUG codons in reconstituted PICs, indicating a destabilized open complex and shift to the closed/PIN state. An eIF1 substitution that should strengthen the eIF2β:eIF1 interface has the opposite genetic and biochemical phenotypes. eIF2β is also predicted to restrict Met-tRNAi movement into the closed/PIN state, and substitutions that should diminish this clash increase UUG initiation in vivo and stabilize Met-tRNAi binding at UUG codons in vitro with little effect on TC loading. Thus, eIF2β anchors eIF1 and TC to the open complex, enhancing PIC assembly and scanning, while impeding rearrangement to the closed conformation at non-AUG codons.

摘要

在翻译起始过程中,包含 eIF1 的 43S 起始前复合物 (PIC) 和 GTP 结合的 eIF2 和 Met-RNAi 的三元复合物 (TC) 扫描 mRNA 以寻找起始密码子。AUG 识别触发 eIF1 的释放,并从开放 PIC 构象重新排列为与 Met-tRNAi 结合更紧密的封闭状态 (PIN 状态)。低温电子显微镜模型揭示了 eIF2β 与 eIF1 和 Met-tRNAi 的接触仅存在于开放复合物中,这应该使封闭状态不稳定。破坏这些接触的 eIF2β 或 eIF1 取代增加了 UUG 密码子的起始,并且复合取代也解除了 GCN4 的翻译抑制,表明 TC 募集较慢。后一种取代在稳定 PIC 中 TC 结合 UUG 密码子时减慢了 TC 加载,但表明开放复合物不稳定,向封闭/PIN 状态转变。应该加强 eIF2β:eIF1 界面的 eIF1 取代具有相反的遗传和生化表型。eIF2β 还被预测限制 Met-tRNAi 进入封闭/PIN 状态的运动,并且应该减少这种冲突的取代会增加体内 UUG 起始,并在体外稳定 Met-tRNAi 在 UUG 密码子上的结合,对 TC 加载几乎没有影响。因此,eIF2β 将 eIF1 和 TC 锚定在开放复合物上,增强 PIC 组装和扫描,同时阻碍非 AUG 密码子上的封闭构象的重排。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a428/6411837/6517d4b2791f/gky1274fig1.jpg

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