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A novel eIF2B-dependent mechanism of translational control in yeast as a response to fusel alcohols

机译:酵母中对eIF2B依赖的新型翻译控制机制对杂醇的响应

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摘要

Fusel alcohols are natural products of amino acid catabolism in the yeast Saccharomyces cerevisiae that cause morphological changes similar to those seen during pseudohyphal growth. We have discovered that certain of these alcohols, including butanol and isoamyl alcohol, bring about a rapid inhibition of translation at the initiation step. This inhibition is strain specific and is not explained by previously described translational control pathways. Using genetic mapping, we have identified a proline to serine allelic variation at amino acid 180 of the GCD1 gene product as the genetic locus that allows translational regulation upon butanol addition. Gcd1p forms part of the eIF2B guanine nucleotide complex that is responsible for recycling eIF2-GDP to eIF2-GTP. This represents one of the key limiting steps of translation initiation and we provide evidence that fusel alcohols target eIF2B in order to bring about translational regulation.
机译:杂醇是酿酒酵母中氨基酸分解代谢的天然产物,其引起的形态变化与假菌丝生长过程中所见相似。我们已经发现,这些醇中的某些,包括丁醇和异戊醇,在起始步骤会迅速抑制翻译。该抑制是菌株特异性的,并且不能通过先前描述的翻译控制途径来解释。使用遗传作图,我们已经确定脯氨酸到GCD1基因产物的氨基酸180处的丝氨酸等位基因变异为遗传位点,允许在添加丁醇后进行翻译调控。 Gcd1p形成了eIF2B鸟嘌呤核苷酸复合物的一部分,该复合物负责将eIF2-GDP再循环到eIF2-GTP。这代表了翻译起始的关键限制步骤之一,我们提供证据表明杂醇靶向eIF2B以实现翻译调控。

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