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硕大利什曼原虫中的翻译起始:多个真核生物翻译起始因子4F亚基同源物的表征

Translation initiation in Leishmania major: characterisation of multiple eIF4F subunit homologues.

作者信息

Dhalia Rafael, Reis Christian R S, Freire Eden R, Rocha Pollyanna O, Katz Rodolfo, Muniz João R C, Standart Nancy, de Melo Neto Osvaldo P

机构信息

Departamento de Biologia Celular, Universidade de Brasilia, Brasilia 70910-900, D.F., Brazil.

出版信息

Mol Biochem Parasitol. 2005 Mar;140(1):23-41. doi: 10.1016/j.molbiopara.2004.12.001.

Abstract

In eukaryotes protein synthesis initiates with the binding of the multimeric translation initiation complex eIF4F - eIF4E, eIF4A and eIF4G - to the monomethylated cap present on the 5' end of mRNAs. eIF4E interacts directly with the cap nucleotide, while eIF4A is a highly conserved RNA helicase and eIF4G acts as a scaffold for the complex with binding sites for both eIF4E and eIF4A. eIF4F binding to the mRNA recruits the small ribosomal subunit to its 5' end. Little is known in detail of protein synthesis in the protozoan parasites belonging to the family Trypanosomatidae. However, the presence of the highly modified cap structure, cap4, and the spliced leader sequence on the 5' ends of all mRNAs suggests possible differences in mRNA recruitment by ribosomes. We identified several potential eIF4F homologues by searching Leishmania major databases: four eIF4Es (LmEIF4E1-4), two eIF4As (LmEIF4A1-2) and five eIF4Gs (LmEIF4G1-5). We report the initial characterisation of LmEIF4E1-3, LmEIF4A1-2 and LmEIF4G3. First, the expression of these proteins in L. major promastigotes was quantitated by Western blotting using isoform specific antibodies. LmEIF4A1 and LmEIF4E3 are very abundant, LmEIF4G3 is moderately abundant and LmEIF4E1/LmEIF4E2/LmEIF4A2 are rare or not detected. In cap-binding assays, only LmEIF4E1 bound to the 7-methyl-GTP-Sepharose resin. Molecular modelling confirmed that LmEIF4E1 has all the structural features of a cap-binding protein. Finally, pull-down assays were used to investigate the potential interaction between the eIF4A (LmEIF4A1/LmEIF4A2) and eIF4G (LmEIF4G1-3) homologues. Only LmEIF4G3, via the HEAT domain, bound specifically both to LmEIF4A1 as well as to human eIF4A. Therefore for each factor, one of the L. major forms seems to fulfil, in part at least, the expected characteristics of a translational initiation factor.

摘要

在真核生物中,蛋白质合成起始于多聚体翻译起始复合物eIF4F(由eIF4E、eIF4A和eIF4G组成)与mRNA 5'端存在的单甲基化帽结合。eIF4E直接与帽核苷酸相互作用,而eIF4A是一种高度保守的RNA解旋酶,eIF4G作为该复合物的支架,具有eIF4E和eIF4A的结合位点。eIF4F与mRNA结合后将小核糖体亚基募集到其5'端。对于属于锥虫科的原生动物寄生虫中的蛋白质合成,目前详细了解甚少。然而,所有mRNA的5'端存在高度修饰的帽结构cap4和剪接前导序列,这表明核糖体募集mRNA可能存在差异。我们通过搜索硕大利什曼原虫数据库鉴定了几种潜在的eIF4F同源物:四个eIF4E(LmEIF4E1 - 4)、两个eIF4A(LmEIF4A1 - 2)和五个eIF4G(LmEIF4G1 - 5)。我们报告了LmEIF4E1 - 3、LmEIF4A1 - 2和LmEIF4G3的初步特征。首先,使用亚型特异性抗体通过蛋白质印迹法定量这些蛋白在硕大利什曼原虫前鞭毛体中的表达。LmEIF4A1和LmEIF4E3非常丰富,LmEIF4G3中等丰富,而LmEIF4E1/LmEIF4E2/LmEIF4A2很少见或未检测到。在帽结合试验中,只有LmEIF4E1与7 - 甲基 - GTP - 琼脂糖树脂结合。分子建模证实LmEIF4E1具有帽结合蛋白的所有结构特征。最后,采用下拉试验研究eIF4A(LmEIF4A1/LmEIF4A2)和eIF4G(LmEIF4G1 - 3)同源物之间的潜在相互作用。只有LmEIF4G3通过HEAT结构域特异性地与LmEIF4A1以及人eIF4A结合。因此,对于每个因子,硕大利什曼原虫的一种形式似乎至少部分满足翻译起始因子的预期特征。

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