Li Tianlu, Belda-Palazón Borja, Ferrando Alejandro, Alepuz Paula
Departamento de Bioquímica y Biología Molecular, Facultad de Ciencias Biológicas, Universitat de València, E-46100 Burjassot, Valencia, Spain.
Instituto de Biología Molecular y Celular de Plantas, Centro Superior de Investigaciones Científicas-Universidad Politécnica de Valencia, 46022 Valencia, Spain.
Genetics. 2014 Aug;197(4):1191-200. doi: 10.1534/genetics.114.166926. Epub 2014 Jun 11.
eIF5A is an essential and evolutionary conserved translation elongation factor, which has recently been proposed to be required for the translation of proteins with consecutive prolines. The binding of eIF5A to ribosomes occurs upon its activation by hypusination, a modification that requires spermidine, an essential factor for mammalian fertility that also promotes yeast mating. We show that in response to pheromone, hypusinated eIF5A is required for shmoo formation, localization of polarisome components, induction of cell fusion proteins, and actin assembly in yeast. We also show that eIF5A is required for the translation of Bni1, a proline-rich formin involved in polarized growth during shmoo formation. Our data indicate that translation of the polyproline motifs in Bni1 is eIF5A dependent and this translation dependency is lost upon deletion of the polyprolines. Moreover, an exogenous increase in Bni1 protein levels partially restores the defect in shmoo formation seen in eIF5A mutants. Overall, our results identify eIF5A as a novel and essential regulator of yeast mating through formin translation. Since eIF5A and polyproline formins are conserved across species, our results also suggest that eIF5A-dependent translation of formins could regulate polarized growth in such processes as fertility and cancer in higher eukaryotes.
真核生物翻译起始因子5A(eIF5A)是一种必需且在进化上保守的翻译延伸因子,最近有人提出它是翻译含有连续脯氨酸的蛋白质所必需的。eIF5A通过hypusination修饰被激活后与核糖体结合,hypusination修饰需要亚精胺,亚精胺是哺乳动物生育的必需因子,也能促进酵母交配。我们发现,在酵母中,响应信息素时,hypusinated eIF5A对于shmoo形成、极化体成分的定位、细胞融合蛋白的诱导以及肌动蛋白组装是必需的。我们还发现,eIF5A是富含脯氨酸的formin蛋白Bni1翻译所必需的,Bni1参与shmoo形成过程中的极化生长。我们的数据表明,Bni1中多聚脯氨酸基序的翻译依赖于eIF5A,并且在缺失多聚脯氨酸后这种翻译依赖性丧失。此外,外源性增加Bni1蛋白水平可部分恢复eIF5A突变体中观察到的shmoo形成缺陷。总体而言,我们的结果确定eIF5A是通过formin蛋白翻译对酵母交配起作用而成为一种新的必需调节因子。由于eIF5A和多聚脯氨酸formin蛋白在物种间是保守的,我们的结果还表明,formin蛋白的eIF5A依赖性翻译可能在高等真核生物的生育和癌症等过程中调节极化生长。