Chial H J, Stemm-Wolf A J, McBratney S, Winey M
Present address: Department of Biology, St Olaf College, Northfield, Minnesota 55057-1098, USA.
Curr Biol. 2000 Nov 30;10(23):1519-22. doi: 10.1016/s0960-9822(00)00829-0.
A rate-limiting step during translation initiation in eukaryotic cells involves binding of the initiation factor eIF4E to the 7-methylguanosine-containing cap of mRNAs. Overexpression of eIF4E leads to malignant transformation [1-3], and eIF4E is elevated in many human cancers [4-7]. In mammalian cells, three eIF4E-binding proteins each interact with eIF4E and inhibit its function [8-10]. In yeast, EAP1 encodes a protein that binds eIF4E and inhibits cap-dependent translation in vitro [11]. A point mutation in the canonical eIF4E-binding motif of Eap1p blocks its interaction with eIF4E [11]. Here, we characterized the genetic interactions between EAP1 and NDC1, a gene whose function is required for duplication of the spindle pole body (SPB) [12], the centrosome-equivalent organelle in yeast that functions as the centrosome. We found that the deletion of EAP1 is lethal when combined with the ndc1-1 mutation. Mutations in NDC1 or altered NDC1 gene dosage lead to genetic instability [13,14]. Yeast strains lacking EAP1 also exhibit genetic instability. We tested whether these phenotypes are due to loss of EAP1 function in regulating translation. We found that both the synthetic lethal phenotype and the genetic instability phenotypes are rescued by a mutant allele of EAP1 that is unable to bind eIF4E. Our findings suggest that Eap1p carries out an eIF4E-independent function to maintain genetic stability, most likely involving SPBs.
真核细胞翻译起始过程中的一个限速步骤涉及起始因子eIF4E与含7-甲基鸟苷的mRNA帽结合。eIF4E的过表达会导致恶性转化[1-3],并且eIF4E在许多人类癌症中表达升高[4-7]。在哺乳动物细胞中,三种eIF4E结合蛋白各自与eIF4E相互作用并抑制其功能[8-10]。在酵母中,EAP1编码一种在体外与eIF4E结合并抑制帽依赖性翻译的蛋白质[11]。Eap1p的典型eIF4E结合基序中的一个点突变会阻断其与eIF4E的相互作用[11]。在这里,我们表征了EAP1与NDC1之间的遗传相互作用,NDC1是一个基因,其功能是纺锤体极体(SPB)复制所必需的[12],SPB是酵母中相当于中心体的细胞器,起着中心体的作用。我们发现,EAP1的缺失与ndc1-1突变结合时是致死的。NDC1中的突变或NDC1基因剂量的改变会导致遗传不稳定[13,14]。缺乏EAP1的酵母菌株也表现出遗传不稳定。我们测试了这些表型是否是由于EAP1在调节翻译中的功能丧失所致。我们发现,合成致死表型和遗传不稳定表型都被一个无法与eIF4E结合的EAP1突变等位基因挽救。我们的研究结果表明,Eap1p执行一种不依赖eIF4E的功能来维持遗传稳定性,很可能涉及SPB。