Zhao Pei, Liu Qiao, Miller W Allen, Goss Dixie J
From the Biochemistry and Chemistry Graduate Programs, Graduate Center, and.
the Department of Chemistry and Biochemistry, Hunter College, City University of New York, New York, New York 10065 and.
J Biol Chem. 2017 Apr 7;292(14):5921-5931. doi: 10.1074/jbc.M116.764902. Epub 2017 Feb 27.
Barley yellow dwarf virus RNA, lacking a 5' cap and a 3' poly(A) tail, contains a cap-independent translation element (BTE) in the 3'-untranslated region that interacts with host translation initiation factor eIF4G. To determine how eIF4G recruits the mRNA, three eIF4G deletion mutants were constructed: (i) eIF4G601-1196, containing amino acids 601-1196, including the putative BTE-binding region, and binding domains for eIF4E, eIF4A, and eIF4B; (ii) eIF4G601-1488, which contains an additional C-terminal eIF4A-binding domain; and (iii) eIF4G742-1196, which lacks the eIF4E-binding site. eIF4G601-1196 binds BTE tightly and supports efficient translation. The helicase complex, consisting of eIF4A, eIF4B, and ATP, stimulated BTE binding with eIF4G601-1196 but not eIF4G601-1488, suggesting that the eIF4A binding domains may serve a regulatory role, with the C-terminal binding site having negative effects. eIF4E binding to eIF4G601-1196 induced a conformational change, significantly increasing the binding affinity to BTE. A comparison of the binding of eIF4G deletion mutants with BTEs containing mutations showed a general correlation between binding affinity and ability to facilitate translation. In summary, these results reveal a new role for the helicase complex in 3' cap-independent translation element-mediated translation and show that the functional core domain of eIF4G plus an adjacent probable RNA-binding domain mediate translation initiation.
大麦黄矮病毒RNA缺乏5'端帽结构和3'端聚腺苷酸尾巴,在其3'非翻译区含有一个不依赖帽结构的翻译元件(BTE),该元件可与宿主翻译起始因子eIF4G相互作用。为了确定eIF4G如何招募mRNA,构建了三个eIF4G缺失突变体:(i)eIF4G601 - 1196,包含氨基酸601 - 1196,包括假定的BTE结合区域以及eIF4E、eIF4A和eIF4B的结合结构域;(ii)eIF4G601 - 1488,其包含一个额外的C端eIF4A结合结构域;(iii)eIF4G742 - 1196,其缺乏eIF4E结合位点。eIF4G601 - 1196与BTE紧密结合并支持高效翻译。由eIF4A、eIF4B和ATP组成的解旋酶复合体刺激了eIF4G601 - 1196与BTE的结合,但未刺激eIF4G601 - 1488与BTE的结合,这表明eIF4A结合结构域可能起调节作用,C端结合位点具有负效应。eIF4E与eIF4G601 - 1196的结合诱导了构象变化,显著增加了对BTE的结合亲和力。对eIF4G缺失突变体与含有突变的BTE的结合情况进行比较,结果显示结合亲和力与促进翻译的能力之间存在普遍相关性。总之,这些结果揭示了解旋酶复合体在3'端不依赖帽结构的翻译元件介导的翻译中的新作用,并表明eIF4G的功能核心结构域加上相邻的可能的RNA结合结构域介导翻译起始。