Jennings Martin D, Pavitt Graham D
a Faculty of Life Sciences ; The University of Manchester ; Manchester , UK.
Cell Cycle. 2014;13(17):2660-5. doi: 10.4161/15384101.2014.948797.
eIF2B is a multisubunit protein that is critical for protein synthesis initiation and its control. It is a guanine nucleotide exchange factor (GEF) for its GTP-binding protein partner eIF2. eIF2 binds initiator tRNA to ribosomes and promotes mRNA AUG codon recognition. eIF2B is critical for regulation of protein synthesis via a conserved mechanism of phosphorylation of eIF2, which converts eIF2 from a substrate to an inhibitor of eIF2B GEF. In addition, inherited mutations affecting eIF2B subunits cause the fatal disorder leukoencephalopathy with Vanishing White Matter (VWM), also called Childhood Ataxia with Central nervous system Hypomyelination (CACH). Here we review findings which reveal that eIF2B is a decameric protein and also define a new function for the eIF2B. Our results demonstrate that the eIF2Bγ subunit is required for eIF2B to gain access to eIF2•GDP. Specifically it displaces a third translation factor eIF5 (a dual function GAP and GDI) from eIF2•GDP/eIF5 complexes. Thus eIF2B is a GDI displacement factor (or GDF) in addition to its role as a GEF, prompting the redrawing of the eIF2 cycling pathway to incorporate the new steps. In structural studies using mass spectrometry and cross-linking it is shown that eIF2B is a dimer of pentamers and so is twice as large as previously thought. A binding site for GTP on eIF2B was also found, raising further questions concerning the mechanism of nucleotide exchange. The implications of these findings for eIF2B function and for VWM/CACH disease are discussed.
真核生物翻译起始因子2B(eIF2B)是一种多亚基蛋白,对蛋白质合成起始及其调控至关重要。它是其GTP结合蛋白伴侣eIF2的鸟嘌呤核苷酸交换因子(GEF)。eIF2将起始tRNA与核糖体结合,并促进mRNA AUG密码子的识别。eIF2B通过保守的eIF2磷酸化机制对蛋白质合成的调控至关重要,该机制将eIF2从底物转变为eIF2B GEF的抑制剂。此外,影响eIF2B亚基的遗传性突变会导致致命性疾病——伴脑白质消失的白质脑病(VWM),也称为伴中枢神经系统髓鞘形成低下的儿童共济失调(CACH)。在此,我们综述了相关研究结果,这些结果揭示eIF2B是一种十聚体蛋白,并确定了eIF2B的一项新功能。我们的结果表明,eIF2Bγ亚基是eIF2B接近eIF2•GDP所必需的。具体而言,它从eIF2•GDP/eIF5复合物中取代了第三种翻译因子eIF5(一种具有双重功能的GAP和GDI)。因此,eIF2B除了作为GEF的作用外,还是一种GDP解离抑制因子(GDF),这促使我们重新绘制eIF2循环途径以纳入新的步骤。在使用质谱和交联技术的结构研究中表明,eIF2B是五聚体的二聚体,因此其大小是之前认为的两倍。还发现了eIF2B上的一个GTP结合位点,这就核苷酸交换机制提出了更多问题。我们讨论了这些发现对eIF2B功能以及VWM/CACH疾病的影响。