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出芽酵母GCN1与GI结构域结合以激活真核起始因子2α激酶GCN2。

Budding yeast GCN1 binds the GI domain to activate the eIF2alpha kinase GCN2.

作者信息

Kubota H, Ota K, Sakaki Y, Ito T

机构信息

Division of Genome Biology, Cancer Research Institute, Kanazawa University, 13-1 Takaramachi, Kanazawa 920-0934, Japan.

出版信息

J Biol Chem. 2001 May 18;276(20):17591-6. doi: 10.1074/jbc.M011793200. Epub 2001 Feb 28.

Abstract

When starved for a single amino acid, the budding yeast Saccharomyces cerevisiae activates the eukaryotic initiation factor 2alpha (eIF2alpha) kinase GCN2 in a GCN1-dependent manner. Phosphorylated eIF2alpha inhibits general translation but selectively derepresses the synthesis of the transcription factor GCN4, which leads to coordinated induction of genes involved in biosynthesis of various amino acids, a phenomenon called general control response. We recently demonstrated that this response requires binding of GCN1 to the GI domain occurring at the N terminus of GCN2 (Kubota, H., Sakaki, Y., and Ito, T. (2000) J. Biol. Chem. 275, 20243-20246). Here we provide the first evidence for the involvement of GCN1-GCN2 interaction in activation of GCN2 per se. We identified a C-terminal segment of GCN1 sufficient to bind the GI domain and used a novel dual bait two-hybrid method to identify mutations rendering GCN1 incapable of interacting with GCN2. The yeast bearing such an allele, gcn1-F2291L, fails to display derepression of GCN4 translation and hence general control response, as does a GI domain mutant, gcn2-Y74A, defective in association with GCN1. Furthermore, we demonstrated that phosphorylation of eIF2alpha is impaired in both mutants. Since GCN2 is the sole eIF2alpha kinase in yeast, these findings indicate a critical role of GCN1-GCN2 interaction in activation of the kinase in vivo.

摘要

当芽殖酵母酿酒酵母缺乏单一氨基酸时,它会以依赖GCN1的方式激活真核起始因子2α(eIF2α)激酶GCN2。磷酸化的eIF2α会抑制整体翻译,但会选择性地解除对转录因子GCN4合成的抑制,这会导致参与各种氨基酸生物合成的基因被协同诱导,这种现象称为一般控制反应。我们最近证明,这种反应需要GCN1与GCN2 N端的GI结构域结合(久保田,H.,坂木,Y.,和伊藤,T.(2000年)《生物化学杂志》275,20243 - 20246)。在这里,我们首次提供了GCN1 - GCN2相互作用参与GCN2自身激活的证据。我们鉴定出GCN1的一个C端片段足以结合GI结构域,并使用一种新型双诱饵双杂交方法来鉴定使GCN1无法与GCN2相互作用的突变。携带这种等位基因gcn1 - F2291L的酵母,与GI结构域突变体gcn2 - Y74A一样,无法显示出对GCN4翻译的去抑制作用,因此也无法产生一般控制反应,gcn2 - Y74A与GCN1的结合存在缺陷。此外,我们证明这两种突变体中eIF2α的磷酸化均受损。由于GCN2是酵母中唯一的eIF2α激酶,这些发现表明GCN1 - GCN2相互作用在体内激酶激活中起着关键作用。

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