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Binding Specificities and Potential Roles of Isoforms of Eukaryotic Initiation Factor 4E in Leishmania

机译:真核生物起始因子4E在利什曼原虫中的结合特异性和同工型的潜在作用。

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The 5′ cap structure of trypanosomatid mRNAs, denoted cap 4, is a complex structure that contains unusual modifications on the first four nucleotides. We examined the four eukaryotic initiation factor 4E (eIF4E) homologues found in the Leishmania genome database. These proteins, denoted LeishIF4E-1 to LeishIF4E-4, are located in the cytoplasm. They show only a limited degree of sequence homology with known eIF4E isoforms and among themselves. However, computerized structure prediction suggests that the cap-binding pocket is conserved in each of the homologues, as confirmed by binding assays to m7GTP, cap 4, and its intermediates. LeishIF4E-1 and LeishIF4E-4 each bind m7GTP and cap 4 comparably well, and only these two proteins could interact with the mammalian eIF4E binding protein 4EBP1, though with different efficiencies. 4EBP1 is a translation repressor that competes with eIF4G for the same residues on eIF4E; thus, LeishIF4E-1 and LeishIF4E-4 are reasonable candidates for serving as translation factors. LeishIF4E-1 is more abundant in amastigotes and also contains a typical 3′ untranslated region element that is found in amastigote-specific genes. LeishIF4E-2 bound mainly to cap 4 and comigrated with polysomal fractions on sucrose gradients. Since the consensus eIF4E is usually found in 48S complexes, LeishIF4E-2 could possibly be associated with the stabilization of trypanosomatid polysomes. LeishIF4E-3 bound mainly m7GTP, excluding its involvement in the translation of cap 4-protected mRNAs. It comigrates with 80S complexes which are resistant to micrococcal nuclease, but its function is yet unknown. None of the isoforms can functionally complement the Saccharomyces cerevisiae eIF4E, indicating that despite their structural conservation, they are considerably diverged.
机译:锥虫体mRNA的5'帽结构,称为帽4,是一个复杂的结构,在前四个核苷酸上包含不同寻常的修饰。我们检查了在 Leishmania 基因组数据库中找到的四个真核起始因子4E(eIF4E)同源物。这些蛋白质称为LeishIF4E-1至LeishIF4E-4,位于细胞质中。它们与已知的eIF4E同工型以及它们之间仅显示有限程度的序列同源性。然而,计算机化的结构预测表明,如通过与m 7 GTP,cap 4及其中间体的结合测定所证实的,在每个同源物中,cap结合口袋是保守的。 LeishIF4E-1和LeishIF4E-4分别与m 7 GTP和cap 4结合得相当好,并且只有这两种蛋白可以与哺乳动物eIF4E结合蛋白4EBP1相互作用,尽管效率不同。 4EBP1是一种翻译抑制子,与eIF4G竞争eIF4E上的相同残基;因此,LeishIF4E-1和LeishIF4E-4是用作翻译因子的合理候选者。 LeishIF4E-1在变形虫中更为丰富,并且还包含一个典型的3'非翻译区元件,该基因存在于鞭毛体特异性基因中。 LeishIF4E-2主要与帽4结合,并与蔗糖梯度上的多体级分结合。由于共有eIF4E通常存在于48S复合物中,因此LeishIF4E-2可能与锥虫体多聚体的稳定有关。 LeishIF4E-3主要结合m 7 GTP,但不参与帽4保护的mRNA的翻译。它与对微球菌核酸酶具有抗性的80S复合物竞争,但其功能尚不清楚。这些同工型均不能在功能上与啤酒酵母eIF4E互补,这表明尽管它们具有结构保守性,但它们之间却存在很大差异。

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