Pavitt G D, Ramaiah K V, Kimball S R, Hinnebusch A G
Laboratory of Eukaryotic Gene Regulation, National Institute of Child Health and Human Development, Bethesda, Maryland 20892, USA.
Genes Dev. 1998 Feb 15;12(4):514-26. doi: 10.1101/gad.12.4.514.
eIF2B is a heteropentameric guanine-nucleotide exchange factor essential for protein synthesis initiation in eukaryotes. Its activity is inhibited in response to starvation or stress by phosphorylation of the alpha subunit of its substrate, translation initiation factor eIF2, resulting in reduced rates of translation and cell growth. We have used an in vitro nucleotide-exchange assay to show that wild-type yeast eIF2B is inhibited by phosphorylated eIF2 [eIF2(alphaP)] and to characterize eIF2B regulatory mutations that render translation initiation insensitive to eIF2 phosphorylation in vivo. Unlike wild-type eIF2B, eIF2B complexes with mutated GCN3 or GCD7 subunits efficiently catalyzed GDP exchange using eIF2(alphaP) as a substrate. Using an affinity-binding assay, we show that an eIF2B subcomplex of the GCN3, GCD7, and GCD2 subunits binds to eIF2 and has a higher affinity for eIF2(alphaP), but it lacks nucleotide-exchange activity. In contrast, the GCD1 and GCD6 subunits form an eIF2B subcomplex that binds equally to eIF2 and eIF2(alphaP). Remarkably, this second subcomplex has higher nucleotide-exchange activity than wild-type eIF2B that is not inhibited by eIF2(alphaP). The identification of regulatory and catalytic eIF2B subcomplexes leads us to propose that binding of eIF2(alphaP) to the regulatory subcomplex prevents a productive interaction with the catalytic subcomplex, thereby inhibiting nucleotide exchange.
真核起始因子2B(eIF2B)是一种异源五聚体鸟嘌呤核苷酸交换因子,对真核生物中的蛋白质合成起始至关重要。在饥饿或应激反应中,其底物翻译起始因子eIF2的α亚基发生磷酸化,从而抑制eIF2B的活性,导致翻译速率和细胞生长速率降低。我们利用体外核苷酸交换试验表明,野生型酵母eIF2B被磷酸化的eIF2 [eIF2(αP)] 抑制,并对eIF2B调节突变进行了表征,这些突变使体内翻译起始对eIF2磷酸化不敏感。与野生型eIF2B不同,具有突变的GCN3或GCD7亚基的eIF2B复合物能有效地以eIF2(αP) 为底物催化GDP交换。通过亲和结合试验,我们表明GCN3、GCD7和GCD2亚基组成的eIF2B亚复合物与eIF2结合,并且对eIF2(αP) 具有更高的亲和力,但它缺乏核苷酸交换活性。相比之下,GCD1和GCD6亚基形成的eIF2B亚复合物与eIF2和eIF2(αP) 的结合能力相同。值得注意的是,这第二个亚复合物具有比未被eIF2(αP) 抑制的野生型eIF2B更高的核苷酸交换活性。对调节性和催化性eIF2B亚复合物的鉴定使我们提出,eIF2(αP) 与调节性亚复合物的结合阻止了与催化性亚复合物的有效相互作用,从而抑制了核苷酸交换。