Department of Microbiology, Immunology and Molecular Genetics, David Geffen School of Medicine, University of California at Los Angeles, Los Angeles, California 90095, USA.
Department of Biological Chemistry, David Geffen School of Medicine, University of California at Los Angeles, Los Angeles, California 90095, USA.
RNA. 2014 Aug;20(8):1272-86. doi: 10.1261/rna.045534.114. Epub 2014 Jun 24.
Members of the eIF4E mRNA cap-binding family are involved in translation and the modulation of transcript availability in other systems as part of a three-component complex including eIF4G and eIF4A. The kinetoplastids possess four described eIF4E and five eIF4G homologs. We have identified two new eIF4E family proteins in Trypanosoma brucei, and define distinct complexes associated with the fifth member, TbEIF4E5. The cytosolic TbEIF4E5 protein binds cap 0 in vitro. TbEIF4E5 was found in association with two of the five TbEIF4Gs. TbIF4EG1 bound TbEIF4E5, a 47.5-kDa protein with two RNA-binding domains, and either the regulatory protein 14-3-3 II or a 117.5-kDa protein with guanylyltransferase and methyltransferase domains in a potentially dynamic interaction. The TbEIF4G2/TbEIF4E5 complex was associated with a 17.9-kDa hypothetical protein and both 14-3-3 variants I and II. Knockdown of TbEIF4E5 resulted in the loss of productive cell movement, as evidenced by the inability of the cells to remain in suspension in liquid culture and the loss of social motility on semisolid plating medium, as well as a minor reduction of translation. Cells appeared lethargic, as opposed to compromised in flagellar function per se. The minimal use of transcriptional control in kinetoplastids requires these organisms to implement downstream mechanisms to regulate gene expression, and the TbEIF4E5/TbEIF4G1/117.5-kDa complex in particular may be a key player in that process. We suggest that a pathway involved in cell motility is affected, directly or indirectly, by one of the TbEIF4E5 complexes.
eIF4E mRNA 帽结合家族的成员参与翻译和其他系统中转录物可用性的调节,作为包括 eIF4G 和 eIF4A 在内的三组分复合物的一部分。动基体目生物拥有四个描述的 eIF4E 和五个 eIF4G 同源物。我们在布氏锥虫中鉴定了两个新的 eIF4E 家族蛋白,并定义了与第五个成员 TbEIF4E5 相关的独特复合物。细胞质 TbEIF4E5 蛋白在体外与帽 0 结合。发现 TbEIF4E5 与五个 TbEIF4G 中的两个结合。TbIF4EG1 与 TbEIF4E5 结合,TbEIF4E5 是一种具有两个 RNA 结合结构域的 47.5kDa 蛋白,可与调节蛋白 14-3-3 II 或具有鸟苷转移酶和甲基转移酶结构域的 117.5kDa 蛋白形成潜在动态相互作用。TbEIF4G2/TbEIF4E5 复合物与 17.9kDa 假设蛋白和两种 14-3-3 变体 I 和 II 相关。TbEIF4E5 的敲低导致有性细胞运动能力丧失,这表现在细胞无法在液体培养中保持悬浮状态,在半固体平板培养基上失去社会运动能力,以及翻译能力略有下降。细胞看起来懒惰,而不是本身鞭毛功能受损。动基体目生物中对转录控制的最小使用要求这些生物体实施下游机制来调节基因表达,特别是 TbEIF4E5/TbEIF4G1/117.5kDa 复合物可能是该过程中的关键参与者。我们建议,细胞运动途径受到 TbEIF4E5 复合物之一的直接或间接影响。