Kershaw Christopher J, Jennings Martin D, Cortopassi Francesco, Guaita Margherita, Al-Ghafli Hawra, Pavitt Graham D
Division of Molecular and Cellular Function, School of Biological Sciences, Faculty of Biology, Medicine and Health, The University of Manchester, Manchester M13 9PT, UK.
iScience. 2021 Nov 14;24(12):103454. doi: 10.1016/j.isci.2021.103454. eCollection 2021 Dec 17.
eIF2B is the guanine nucleotide exchange factor (GEF) required for cytoplasmic protein synthesis initiation in eukaryotes and its regulation within the integrated stress response (ISR). It activates its partner factor eIF2, thereby promoting translation initiation. Here we provide evidence through biochemical and genetic approaches that eIF2B can bind directly to GTP and this can enhance its rate of GEF activity toward eIF2-GDP . GTP binds to a subcomplex of the eIF2Bγ and ε subunits. The eIF2Bγ amino-terminal domain shares structural homology with hexose sugar phosphate pyrophosphorylase enzymes that bind specific nucleotides. A K66R mutation in eIF2Bγ is especially sensitive to guanine or GTP in a range of functional assays. Taken together, our data suggest eIF2Bγ may act as a sensor of purine nucleotide availability and thus modulate eIF2B activity and protein synthesis in response to fluctuations in cellular nucleotide levels.
真核生物中,真核起始因子2B(eIF2B)是细胞质蛋白质合成起始以及综合应激反应(ISR)中所需的鸟嘌呤核苷酸交换因子(GEF)。它激活其伴侣因子eIF2,从而促进翻译起始。在此,我们通过生化和遗传学方法提供证据表明,eIF2B可直接结合GTP,这能够提高其对eIF2-GDP的GEF活性速率。GTP结合至eIF2Bγ和ε亚基的一个亚复合物。eIF2Bγ氨基末端结构域与结合特定核苷酸的己糖磷酸焦磷酸化酶具有结构同源性。在一系列功能测定中,eIF2Bγ中的K66R突变对鸟嘌呤或GTP特别敏感。综合来看,我们的数据表明eIF2Bγ可能作为嘌呤核苷酸可用性的传感器,从而根据细胞核苷酸水平的波动来调节eIF2B活性和蛋白质合成。