Department of Molecular and Cellular Biology and ‡Department of Biochemistry and Molecular Medicine, School of Medicine, University of California at Davis , Davis, California 95616, United States.
J Proteome Res. 2011 Oct 7;10(10):4613-23. doi: 10.1021/pr200429y. Epub 2011 Sep 12.
Eukaryotic translation requires a suite of proteins known as eukaryotic initiation factors (eIFs). These molecular effectors oversee the highly regulated initiation phase of translation. Essential to eukaryotic translation initiation is the protein eIF2, a heterotrimeric protein composed of the individually distinct subunits eIF2α, eIF2β, and eIF2γ. The ternary complex, formed when eIF2 binds to GTP and Met-tRNA(i), is responsible for shuttling Met-tRNA(i) onto the awaiting 40S ribosome. As a necessary component for translation initiation, much attention has been given to the phosphorylation of eIF2α. Despite several previous investigations into eIF2 phosphorylation, most have centered on α- or β-subunit phosphorylation and little is known regarding γ-subunit phosphorylation. Herein, we report eight sites of phosphorylation on the largest eIF2 subunit with seven novel phosphosite identifications via high resolution mass spectrometry. Of the eight sites identified, three are located in either the switch regions or nucleotide binding pocket domain. In addition, we have identified a possible kinase of eIF2, protein kinase C (PKC), which is capable of phosphorylating threonine 66 (thr-66) on the intact heterotrimer. These findings may shed new light on the regulation of ternary complex formation and alternate molecular effectors involved in this process prior to 80S ribosome formation and subsequent translation elongation and termination.
真核翻译需要一套被称为真核起始因子(eIFs)的蛋白质。这些分子效应物监督着翻译的高度调控起始阶段。真核翻译起始的关键是蛋白质 eIF2,它是一种由三个独立亚基 eIF2α、eIF2β 和 eIF2γ 组成的异三聚体蛋白。当 eIF2 结合 GTP 和 Met-tRNA(i) 时,形成的三元复合物负责将 Met-tRNA(i) 运送到等待的 40S 核糖体上。作为翻译起始的必要组成部分,eIF2α 的磷酸化受到了广泛关注。尽管之前已经有几项关于 eIF2 磷酸化的研究,但大多数研究都集中在α或β亚基的磷酸化上,而对于γ亚基磷酸化知之甚少。在此,我们通过高分辨率质谱法报告了 eIF2 大亚基上的八个磷酸化位点,其中有七个是新的磷酸化位点。在所鉴定的八个位点中,有三个位于开关区域或核苷酸结合口袋结构域内。此外,我们还鉴定出了一种可能的 eIF2 激酶,即蛋白激酶 C(PKC),它能够磷酸化完整异三聚体上的苏氨酸 66(thr-66)。这些发现可能为三元复合物形成的调节以及在 80S 核糖体形成以及随后的翻译延伸和终止之前涉及该过程的替代分子效应物提供新的见解。