Division of Biophysics, Institute of Experimental Physics, Faculty of Physics, University of Warsaw, Warsaw 02-089, Poland.
Department of Biochemistry, University of Cambridge, Tennis Court Road, Cambridge CB2 1QW, UK.
J Mol Biol. 2015 Jan 30;427(2):387-405. doi: 10.1016/j.jmb.2014.11.009. Epub 2014 Nov 15.
eIF4E1b, closely related to the canonical translation initiation factor 4E (eIF4E1a), cap-binding protein is highly expressed in mouse, Xenopus and zebrafish oocytes. We have previously characterized eIF4E1b as a component of the CPEB mRNP translation repressor complex along with the eIF4E-binding protein 4E-Transporter, the Xp54/DDX6 RNA helicase and additional RNA-binding proteins. eIF4E1b exhibited only very weak interactions with m(7)GTP-Sepharose and, rather than binding eIF4G, interacted with 4E-T. Here we undertook a detailed examination of both Xenopus and human eIF4E1b interactions with cap analogues using fluorescence titration and homology modeling. The predicted structure of eIF4E1b maintains the α+β fold characteristic of eIF4E proteins and its cap-binding pocket is similarly arranged by critical amino acids: Trp56, Trp102, Glu103, Trp166, Arg112, Arg157 and Lys162 and residues of the C-terminal loop. However, we demonstrate that eIF4E1b is 3-fold less well able to bind the cap than eIF4E1a, both proteins being highly stimulated by methylation at N(7) of guanine. Moreover, eIF4E1b proteins are distinguishable from eIF4E1a by a set of conserved amino acid substitutions, several of which are located near to cap-binding residues. Indeed, eIF4E1b possesses several distinct features, namely, enhancement of cap binding by a benzyl group at N(7) position of guanine, a reduced response to increasing length of the phosphate chain and increased binding to a cap separated by a linker from Sepharose, suggesting differences in the arrangement of the protein's core. In agreement, mutagenesis of the amino acids differentiating eIF4E1b from eIF4E1a reduces cap binding by eIF4E1a 2-fold, demonstrating their role in modulating cap binding.
eIF4E1b 与经典翻译起始因子 4E(eIF4E1a)密切相关,是一种帽结合蛋白,在小鼠、非洲爪蟾和斑马鱼卵母细胞中高度表达。我们之前已经将 eIF4E1b 鉴定为 CPEB mRNP 翻译抑制剂复合物的组成部分,该复合物还包括 eIF4E 结合蛋白 4E-Transporter、Xp54/DDX6 RNA 解旋酶和其他 RNA 结合蛋白。eIF4E1b 与 m(7)GTP-Sepharose 的相互作用非常微弱,而不是与 eIF4G 结合,而是与 4E-T 相互作用。在这里,我们使用荧光滴定和同源建模详细研究了 Xenopus 和人 eIF4E1b 与帽类似物的相互作用。eIF4E1b 的预测结构保持了 eIF4E 蛋白的 α+β 折叠特征,其帽结合口袋由关键氨基酸排列而成:色氨酸 56、色氨酸 102、谷氨酸 103、色氨酸 166、精氨酸 112、精氨酸 157 和赖氨酸 162 以及 C 末端环的残基。然而,我们证明 eIF4E1b 与 eIF4E1a 相比,结合帽的能力低 3 倍,这两种蛋白质都高度受到鸟嘌呤 N(7) 甲基化的刺激。此外,eIF4E1b 蛋白通过一组保守的氨基酸取代与 eIF4E1a 区分开来,其中几个取代位于帽结合残基附近。事实上,eIF4E1b 具有几个不同的特征,即,鸟嘌呤 N(7) 位上的苄基基团增强了帽结合,对磷酸链长度增加的反应降低,以及与从 Sepharose 分离的帽结合增加,表明蛋白质核心的排列存在差异。一致地,将区分 eIF4E1b 和 eIF4E1a 的氨基酸突变为 eIF4E1a 降低了 2 倍的帽结合,证明了它们在调节帽结合中的作用。