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真核生物翻译起始因子5(eIF5)与eIF2的β亚基的特异性相互作用。

Specific interaction of eukaryotic translation initiation factor 5 (eIF5) with the beta-subunit of eIF2.

作者信息

Das S, Maiti T, Das K, Maitra U

机构信息

Department of Developmental and Molecular Biology, Albert Einstein College of Medicine of Yeshiva University, Bronx, New York 10461, USA.

出版信息

J Biol Chem. 1997 Dec 12;272(50):31712-8. doi: 10.1074/jbc.272.50.31712.

Abstract

Eukaryotic translation initiation factor 5 (eIF5) interacts with the 40 S initiation complex (40 S.mRNA. eIF3.Met-tRNAf.eIF2.GTP) and mediates hydrolysis of the bound GTP. To characterize the molecular interactions involved in eIF5 function, we have used 32P-labeled recombinant rat eIF5 as a probe in filter overlay assay to identify eIF5-interacting proteins in crude initiation factor preparations. We observed that eIF5 specifically interacted with the beta subunit of initiation factor eIF2. No other initiation factors including the gamma subunit of eIF2 tested positive in this assay. Furthermore, both yeast and mammalian eIF5 bind to the beta subunit of either mammalian or yeast eIF2. Binding analysis with human eIF2beta deletion mutants expressed in Escherichia coli identified a 22-amino acid domain, between amino acids 68 and 89, as the primary eIF5-binding region of eIF2beta. These results along with our earlier observations that (a) eIF5 neither binds nor hydrolyzes free GTP or GTP bound as Met-tRNAf.eIF2.GTP ternary complex, and (b) eIF5 forms a specific complex with eIF2 suggests that the specific interaction between eIF5 and the beta subunit of eIF2 may be critical for the hydrolysis of GTP during translation initiation.

摘要

真核生物翻译起始因子5(eIF5)与40S起始复合物(40S.mRNA.eIF3.Met-tRNAf.eIF2.GTP)相互作用,并介导结合的GTP的水解。为了表征参与eIF5功能的分子相互作用,我们使用32P标记的重组大鼠eIF5作为探针进行滤膜覆盖分析,以鉴定粗起始因子制剂中与eIF5相互作用的蛋白质。我们观察到eIF5与起始因子eIF2的β亚基特异性相互作用。在该分析中,包括eIF2的γ亚基在内的其他起始因子均未检测呈阳性。此外,酵母和哺乳动物的eIF5均与哺乳动物或酵母eIF2的β亚基结合。对在大肠杆菌中表达的人eIF2β缺失突变体的结合分析确定了一个22个氨基酸的结构域,位于第68至89位氨基酸之间,作为eIF2β的主要eIF5结合区域。这些结果以及我们早期的观察结果,即(a)eIF5既不结合也不水解游离GTP或作为Met-tRNAf.eIF2.GTP三元复合物结合的GTP,以及(b)eIF5与eIF2形成特异性复合物,表明eIF5与eIF2β亚基之间的特异性相互作用可能对翻译起始过程中GTP的水解至关重要。

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