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Crystal structure of the C-terminal domain of the ɛ subunit of human translation initiation factor eIF2B

机译:人类翻译起始因子eIF2B的ɛ亚基C末端结构域的晶体结构

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摘要

Eukaryotic translation initiation factor eIF2B, the guanine nucleotide exchange factor (GEF) for eIF2, catalyzes conversion of eIF2·GDP to eIF2·GTP. The eIF2B is composed of five subunits, α, β, γ, δ and ɛ, within which the ɛ subunit is responsible for catalyzing the guanine exchange reaction. Here we present the crystal structure of the C-terminal domain of human eIF2Bɛ (eIF2Bɛ-CTD) at 2.0-Å resolution. The structure resembles a HEAT motif and three charge-rich areas on its surface can be identified. When compared to yeast eIF2Bɛ-CTD, one area involves highly conserved AA boxes while the other two are only partially conserved. In addition, the previously reported mutations in human eIF2Bɛ-CTD, which are related to the loss of the GEF activity and human VWM disease, have been discussed. Based on the structure, most of such mutations tend to destabilize the HEAT motif.
机译:真核翻译起始因子eIF2B,即eIF2的鸟嘌呤核苷酸交换因子(GEF),催化eIF2·GDP转化为eIF2·GTP。 eIF2B由五个亚基组成:α,β,γ,δ和ɛ,其中ɛ亚基负责催化鸟嘌呤交换反应。在这里,我们以2.0Å的分辨率呈现了人类eIF2B 4(eIF2B 4 -CTD)C末端结构域的晶体结构。该结构类似于HEAT图案,可以识别其表面上的三个电荷丰富的区域。与酵母eIF2B1-CTD相比,一个区域涉及高度保守的AA盒,而其他两个区域仅部分保守。另外,已经讨论了先前报道的人eIF2B 1 -CTD中与GEF活性丧失和人VWM疾病有关的突变。基于结构,大多数此类突变往往会破坏HEAT基序的稳定性。

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