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Eap1p,酿酒酵母中一种新型的真核生物翻译起始因子4E相关蛋白。

Eap1p, a novel eukaryotic translation initiation factor 4E-associated protein in Saccharomyces cerevisiae.

作者信息

Cosentino G P, Schmelzle T, Haghighat A, Helliwell S B, Hall M N, Sonenberg N

机构信息

Department of Biochemistry and McGill Cancer Center, McGill University, Montreal, Québec H3G 1Y6, Canada.

出版信息

Mol Cell Biol. 2000 Jul;20(13):4604-13. doi: 10.1128/MCB.20.13.4604-4613.2000.

Abstract

Ribosome binding to eukaryotic mRNA is a multistep process which is mediated by the cap structure [m(7)G(5')ppp(5')N, where N is any nucleotide] present at the 5' termini of all cellular (with the exception of organellar) mRNAs. The heterotrimeric complex, eukaryotic initiation factor 4F (eIF4F), interacts directly with the cap structure via the eIF4E subunit and functions to assemble a ribosomal initiation complex on the mRNA. In mammalian cells, eIF4E activity is regulated in part by three related translational repressors (4E-BPs), which bind to eIF4E directly and preclude the assembly of eIF4F. No structural counterpart to 4E-BPs exists in the budding yeast, Saccharomyces cerevisiae. However, a functional homolog (named p20) has been described which blocks cap-dependent translation by a mechanism analogous to that of 4E-BPs. We report here on the characterization of a novel yeast eIF4E-associated protein (Eap1p) which can also regulate translation through binding to eIF4E. Eap1p shares limited homology to p20 in a region which contains the canonical eIF4E-binding motif. Deletion of this domain or point mutation abolishes the interaction of Eap1p with eIF4E. Eap1p competes with eIF4G (the large subunit of the cap-binding complex, eIF4F) and p20 for binding to eIF4E in vivo and inhibits cap-dependent translation in vitro. Targeted disruption of the EAP1 gene results in a temperature-sensitive phenotype and also confers partial resistance to growth inhibition by rapamycin. These data indicate that Eap1p plays a role in cell growth and implicates this protein in the TOR signaling cascade of S. cerevisiae.

摘要

核糖体与真核生物mRNA的结合是一个多步骤过程,该过程由存在于所有细胞(除细胞器外)mRNA 5'末端的帽结构[m(7)G(5')ppp(5')N,其中N为任意核苷酸]介导。异源三聚体复合物真核起始因子4F(eIF4F)通过eIF4E亚基直接与帽结构相互作用,并在mRNA上组装核糖体起始复合物。在哺乳动物细胞中,eIF4E的活性部分受三种相关的翻译抑制因子(4E-BPs)调节,它们直接与eIF4E结合并阻止eIF4F的组装。在出芽酵母酿酒酵母中不存在与4E-BPs结构对应的蛋白。然而,已描述了一种功能同源物(命名为p20),它通过类似于4E-BPs的机制阻断帽依赖性翻译。我们在此报告一种新型酵母eIF4E相关蛋白(Eap1p)的特性,该蛋白也可通过与eIF4E结合来调节翻译。Eap1p在包含典型eIF4E结合基序的区域与p20具有有限的同源性。该结构域的缺失或点突变消除了Eap1p与eIF4E的相互作用。Eap1p在体内与eIF4G(帽结合复合物eIF4F的大亚基)和p20竞争与eIF4E的结合,并在体外抑制帽依赖性翻译。对EAP1基因进行靶向破坏会导致温度敏感表型,并且还赋予对雷帕霉素生长抑制的部分抗性。这些数据表明Eap1p在细胞生长中起作用,并表明该蛋白参与酿酒酵母的TOR信号级联反应。

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