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人翻译起始因子2Bα亚基的晶体结构

Crystal structure of the alpha subunit of human translation initiation factor 2B.

作者信息

Hiyama Takuya B, Ito Takuhiro, Imataka Hiroaki, Yokoyama Shigeyuki

机构信息

Department of Biophysics and Biochemistry, Graduate School of Science, the University of Tokyo, 7-3-1 Hongo, Bunkyo-ku, Tokyo 113-0033, Japan.

出版信息

J Mol Biol. 2009 Oct 2;392(4):937-51. doi: 10.1016/j.jmb.2009.07.054. Epub 2009 Jul 23.

Abstract

Eukaryotic translation initiation factor 2B (eIF2B) is the heteropentameric guanine-nucleotide exchange factor specific for eukaryotic initiation factor 2 (eIF2). Under stressed conditions, guanine-nucleotide exchange is strongly inhibited by the tight binding of phosphorylated eIF2 to eIF2B. Here, we report the crystal structure of the alpha subunit of human eIF2B at 2.65 A resolution. The eIF2Balpha structure consists of the N-terminal alpha-helical domain and the C-terminal Rossmann-fold-like domain. A positively charged pocket, whose entrance is about 15-17 A in diameter, resides at the boundary between the two domains. A sulfate ion is located at the bottom of the pocket (about 16 A in depth). The residues comprising the sulfate-ion-binding site are strictly conserved in eIF2Balpha. Since this deep, wide pocket with the sulfate-ion-binding site is not conserved in distant homologues, including 5-methylthioribose 1-phosphate isomerases, these characteristics may be distinctive of eIF2Balpha. Interestingly, the yeast eIF2Balpha missense mutations that reduce the eIF2B sensitivity to phosphorylated eIF2 are mapped on the other side of the pocket. One of the three human eIF2Balpha missense mutations that induce the lethal brain disorder vanishing white matter or childhood ataxia with central nervous system hypomyelination is mapped inside the pocket. The beta and delta subunits of eIF2B are homologous to eIF2Balpha and may have tertiary structures similar to the present eIF2Balpha structure. The sulfate-ion-binding residues of eIF2Balpha are well conserved in eIF2Bbeta/delta. The abovementioned yeast and human missense mutations of eIF2Bbeta/delta were also mapped on the eIF2Balpha structure, which revealed that the human mutations are clustered on the same side as the pocket, while the yeast mutations reside on the opposite side. As most of the mutated residues are exposed on the surface of the eIF2B subunit structure, these exposed residues are likely to be involved in either the subunit interactions or the interaction with eIF2.

摘要

真核生物翻译起始因子2B(eIF2B)是对真核生物起始因子2(eIF2)具有特异性的异源五聚体鸟嘌呤核苷酸交换因子。在应激条件下,磷酸化的eIF2与eIF2B紧密结合会强烈抑制鸟嘌呤核苷酸交换。在此,我们报告了人eIF2Bα亚基在2.65 Å分辨率下的晶体结构。eIF2Bα结构由N端α螺旋结构域和C端类罗斯曼折叠结构域组成。一个带正电荷的口袋位于两个结构域之间的边界处,其入口直径约为15 - 17 Å。一个硫酸根离子位于口袋底部(深度约为16 Å)。构成硫酸根离子结合位点的残基在eIF2Bα中严格保守。由于这个带有硫酸根离子结合位点的深而宽的口袋在包括5 - 甲基硫代核糖1 - 磷酸异构酶在内的远亲同源物中并不保守,这些特征可能是eIF2Bα所特有的。有趣的是,降低eIF2B对磷酸化eIF2敏感性的酵母eIF2Bα错义突变位于口袋的另一侧。导致致命性脑疾病——消失性白质或伴有中枢神经系统髓鞘形成不足的儿童共济失调的三个人类eIF2Bα错义突变之一位于口袋内部。eIF2B的β和δ亚基与eIF2Bα同源,可能具有与当前eIF2Bα结构相似的三级结构。eIF2Bα的硫酸根离子结合残基在eIF2Bβ/δ中高度保守。上述酵母和人类eIF2Bβ/δ的错义突变也定位在eIF2Bα结构上,这表明人类突变聚集在与口袋同侧,而酵母突变位于相反侧。由于大多数突变残基暴露在eIF2B亚基结构表面,这些暴露的残基可能参与亚基间相互作用或与eIF2的相互作用。

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