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Five eIF4E isoforms from Arabidopsis thaliana are characterized by distinct features of cap analogs binding

机译:来自Arabidopsis ThalanaA的五种EIF4E同种型的特征是帽模拟结合的不同特征

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The assembly of the ribosome on majority of eukaryotic mRNAs is initiated by the recruitment of eIF4E protein to the mRNA 5' end cap structure. Flowering plants use two eIF4E isoforms, named eIF4E and eIF(iso)4E, as canonical translation initiation factors and possess a homolog of mammalian 4EHP (or eIF4E-2) termed nCBP. Plants from Brassicaceae family additionally conserve a close paralog of eIF4E which in Arabidopsis thaliana has two copies named eIF4E1b and eIF4E1c. In order to assess the efficiency of plant non-canonical (eIF4E1b/1c and nCBP) and canonical (eIF4E and eIF(iso)4E) eIF4E proteins to bind mRNAs we utilized fluorescence titrations to determine accurate binding affinities of five A. thaliana eIF4E isoforms for a series of cap analogs. We found that eIF4E binds cap analogs from 4-fold to 10-fold stronger than eIF(iso)4E, while binding affinities of nCBP and eIF(iso)4E are comparable. Furthermore, eIF4E1c interacts similarly strongly with the cap as eIF4E, but eIF4E1b binds cap analogs ca. 2-fold weaker than eIF4E1c, regardless of the 95% sequence identity between these two proteins. The use of differentially chemically modified cap analogs in binding studies and a detailed analysis of the obtained homology models gave us insight into the molecular characteristic of varying cap-binding abilities of Arabidopsis eIF4E isoforms. (C) 2014 Elsevier Inc. All rights reserved.
机译:通过募集EIF4E蛋白至mRNA 5'末端帽结构,启动核糖体大多数真核mRNA的组装。开花植物使用两种EIF4E同种型,名为EIF4E和EIF(ISO)4E,作为规范翻译启动因子,并具有哺乳动物4ehp(或EIF4E-2)的同源物中NCBP。来自Brassicaceae家族的植物另外,在拟南芥中的eif4e的紧密鹦鹉,其中包含两个名为EIF4E1B和EIF4E1C的副本。为了评估植物非规范(EIF4E1B / 1C和NCBP)的效率和规范(EIF4E和EIF(ISO)4E)eIF4E蛋白结合MRNAS,我们利用荧光滴定来确定五种A. Thilana EIF4E同种型的准确结合亲和力对于一系列帽子类似物。我们发现EIF4E将盖子类似物与EY(ISO)4e强的4倍粘合到10倍,而NCBP和EIF(ISO)4E的结合亲和力是可比的。此外,EIF4E1C与帽相互作用,如EIF4E,但EIF4E1B结合帽类似物CA.无论这两个蛋白质之间的95%序列同一性如何,2倍弱于EIF4E1C。使用差异化学改性的帽类似物在结合研究中和对所获得的同源模型的详细分析,我们深入了解了拟南芥EIF4E同种型的不同帽结合能力的分子特征。 (c)2014年elsevier Inc.保留所有权利。

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