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首页> 外文期刊>Molecular biology of the cell >A Highlights from MBoC Selection: Fusel Alcohols Regulate Translation Initiation by Inhibiting eIF2B to Reduce Ternary Complex in a Mechanism That May Involve Altering the Integrity and Dynamics of the eIF2B Body
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A Highlights from MBoC Selection: Fusel Alcohols Regulate Translation Initiation by Inhibiting eIF2B to Reduce Ternary Complex in a Mechanism That May Involve Altering the Integrity and Dynamics of the eIF2B Body

机译:MBoC选择的亮点:乙醇通过抑制eIF2B降低三元复合物的表达来调节翻译起始,其机制可能涉及改变eIF2B主体的完整性和动力学。

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Recycling of eIF2-GDP to the GTP-bound form constitutes a core essential, regulated step in eukaryotic translation. This reaction is mediated by eIF2B, a heteropentameric factor with important links to human disease. eIF2 in the GTP-bound form binds to methionyl initiator tRNA to form a ternary complex, and the levels of this ternary complex can be a critical determinant of the rate of protein synthesis. Here we show that eIF2B serves as the target for translation inhibition by various fusel alcohols in yeast. Fusel alcohols are endpoint metabolites from amino acid catabolism, which signal nitrogen scarcity. We show that the inhibition of eIF2B leads to reduced ternary complex levels and that different eIF2B subunit mutants alter fusel alcohol sensitivity. A DNA tiling array strategy was developed that overcame difficulties in the identification of these mutants where the phenotypic distinctions were too subtle for classical complementation cloning. Fusel alcohols also lead to eIF2α dephosphorylation in a Sit4p-dependent manner. In yeast, eIF2B occupies a large cytoplasmic body where guanine nucleotide exchange on eIF2 can occur and be regulated. Fusel alcohols impact on both the movement and dynamics of this 2B body. Overall, these results confirm that the guanine nucleotide exchange factor, eIF2B, is targeted by fusel alcohols. Moreover, they highlight a potential connection between the movement or integrity of the 2B body and eIF2B regulation.
机译:将eIF2-GDP回收成GTP结合形式是真核翻译中一个关键的,受监管的核心步骤。该反应由eIF2B介导,eIF2B是与人类疾病有着重要联系的异戊二烯因子。 GTP结合形式的eIF2与甲硫酰基引发剂tRNA结合形成三元复合物,该三元复合物的水平可能是决定蛋白质合成速率的关键因素。在这里,我们显示eIF2B作为酵母中各种杂醇的翻译抑制靶标。脂肪醇是氨基酸分解代谢的终点代谢产物,表示氮缺乏。我们表明,对eIF2B的抑制会导致三元复合物水平降低,并且不同的eIF2B亚基突变体会改变杂醇的敏感性。开发了一种DNA平铺阵列策略,克服了在鉴定这些突变体时遇到的困难,在这些突变体中,表型区别对于传统的互补克隆而言太微妙了。脂肪醇还以Sit4p依赖性方式导致eIF2α脱磷酸化。在酵母中,eIF2B占据较大的细胞质体,在eIF2上鸟嘌呤核苷酸的交换可以发生并受到调控。脂肪醇会影响该2B物体的运动和动力。总体而言,这些结果证实鸟嘌呤核苷酸交换因子eIF2B被杂醇所靶向。此外,它们突出了2B主体的运动或完整性与eIF2B法规之间的潜在联系。

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