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两个斑马鱼eIF4E家族成员表达存在差异且功能不同。

Two zebrafish eIF4E family members are differentially expressed and functionally divergent.

作者信息

Robalino Javier, Joshi Bhavesh, Fahrenkrug Scott C, Jagus Rosemary

机构信息

Center of Marine Biotechnology, Baltimore, Maryland 21202, USA.

出版信息

J Biol Chem. 2004 Mar 12;279(11):10532-41. doi: 10.1074/jbc.M313688200. Epub 2003 Dec 29.

Abstract

Eukaryotic translation initiation factor 4E (eIF4E) is an essential component of the translational machinery that binds m(7)GTP and mediates the recruitment of capped mRNAs by the small ribosomal subunit. Recently, a number of proteins with homology to eIF4E have been reported in plants, invertebrates, and mammals. Together with the prototypical translation factor, these constitute a new family of structurally related proteins. To distinguish the prototypical translation factor eIF4E from other family members, it has been termed eIF4E-1 (Keiper, B. D., Lamphear, B. J., Deshpande, A. M., Jankowska-Anyszka, M., Aamodt, E. J., Blumenthal, T., and Rhoads, R. E. (2000) J. Biol. Chem. 275, 10590-10596). We describe the characterization of two eIF4E family members in the zebrafish Danio rerio. Based on their relative identities with human eIF4E-1, these zebrafish proteins are termed eIF4E-1A (82%) and eIF4E-1B (66%). eIF4E-1B, originally termed eIF4E(L), has been reported previously as the zebrafish eIF4E-1 counterpart (Fahrenkrug, S. C., Dahlquist, M. O., Clark, K., and Hackett, P. B. (1999) Differentiation 65, 191-201; Fahrenkrug, S. C., Joshi, B., Hackett, P. B., and Jagus, R. (2000) Differentiation 66, 15-22). Sequence comparisons suggest that the two genes probably evolved from a duplication event that occurred during vertebrate evolution. eIF4E-1A is expressed ubiquitously in zebrafish, whereas expression of eIF4E-1B is restricted to early embryonic development and to gonads and muscle of the tissues investigated. The ability of these two zebrafish proteins to bind m(7)GTP, eIF4G, and 4E-BP, as well as to complement yeast conditionally deficient in functional eIF4E, show that eIF4E-1A is a functional equivalent of human eIF4E-1. Surprisingly, although eIF4E-1B possesses all known residues thought to be required for interaction with the cap structure, eIF4G, and 4E-BPs, it fails to interact with any of these components, suggesting that this protein serves a role other than that assigned to eIF4E.

摘要

真核生物翻译起始因子4E(eIF4E)是翻译机制的一个重要组成部分,它结合m⁷GTP并介导小核糖体亚基募集带帽的mRNA。最近,在植物、无脊椎动物和哺乳动物中报道了许多与eIF4E具有同源性的蛋白质。这些蛋白质与典型的翻译因子一起,构成了一个结构相关的新蛋白质家族。为了将典型的翻译因子eIF4E与其他家族成员区分开来,它被命名为eIF4E-1(Keiper,B. D.,Lamphear,B. J.,Deshpande,A. M.,Jankowska-Anyszka,M.,Aamodt,E. J.,Blumenthal,T.,和Rhoads,R. E.(2000)J. Biol. Chem. 275,10590 - 10596)。我们描述了斑马鱼(Danio rerio)中两个eIF4E家族成员的特征。根据它们与人类eIF4E-1的相对同源性,这些斑马鱼蛋白被命名为eIF4E-1A(82%)和eIF4E-1B(66%)。eIF4E-1B最初被称为eIF4E(L),之前已被报道为斑马鱼的eIF4E-1对应物(Fahrenkrug,S. C.,Dahlquist,M. O.,Clark,K.,和Hackett,P. B.(1999)Differentiation 65,191 - 201;Fahrenkrug,S. C.,Joshi,B.,Hackett,P. B.,和Jagus,R.(2000)Differentiation 66,15 - 22)。序列比较表明,这两个基因可能是在脊椎动物进化过程中发生的一次复制事件后演化而来的。eIF4E-1A在斑马鱼中广泛表达,而eIF4E-1B的表达仅限于早期胚胎发育以及所研究组织的性腺和肌肉。这两种斑马鱼蛋白结合m⁷GTP、eIF4G和4E-BP的能力,以及对功能上缺乏eIF4E的酵母进行互补的能力,表明eIF4E-1A是人类eIF4E-1的功能等同物。令人惊讶的是,尽管eIF4E-1B拥有所有被认为与帽结构、eIF4G和4E-BP相互作用所需的已知残基,但它未能与这些成分中的任何一种相互作用,这表明该蛋白具有不同于赋予eIF4E的其他作用。

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