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Growth impairment resulting from expression of influenza virus M2 protein in Saccharomyces cerevisiae: identification of a novel inhibitor of influenza virus.

机译:在啤酒酵母中表达流感病毒M2蛋白导致的生长障碍:一种新型流感病毒抑制剂的鉴定。

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摘要

The gene encoding M2, the ion channel-forming protein of influenza virus A, was expressed under the control of an inducible promoter in Saccharomyces cerevisiae. By using single and multicopy plasmids containing GAL promoter-M2 fusions, a correlation was observed between plasmid copy number and growth in medium inducing M2 expression. Cells expressing M2 from multicopy plasmids have reduced growth rates, suggesting that high levels of M2 are toxic to growth. The addition of amantadine, a compound known to block the ion channel activity of certain M2 alleles, restores the growth rates to wild-type levels in cells expressing an amantadine-susceptible allele of M2 but not an amantadine-resistant allele of M2, suggesting that M2 expression in S. cerevisiae results in the formation of functional M2 ion channels. Measurements of extracellular acidification by microphysiometry suggest that proton efflux in M2-expressing cells is altered and that the addition of amantadine permits the reestablishment of the proton gradient. The growth impairment phenotype resulting from M2 expression was used to develop a high-capacity screening assay which identified a novel inhibitor possessing an antiviral profile similar to that of amantadine.
机译:编码M2的基因(流感病毒A的离子通道形成蛋白)在啤酒酵母中的诱导型启动子的控制下表达。通过使用包含GAL启动子-M2融合蛋白的单拷贝和多拷贝质粒,观察到质粒拷贝数与诱导M2表达的培养基中生长之间的相关性。从多拷贝质粒表达M2的细胞的生长速率降低,表明高水平的M2对生长有毒。金刚烷胺(一种已知会阻断某些M2等位基因的离子通道活性的化合物)的添加使表达M2的金刚烷胺敏感性等位基因但不表达M2的金刚烷胺抗性等位基因的细胞的生长速率恢复至野生型水平,这表明酿酒酵母中的M2表达导致功能性M2离子通道的形成。通过显微生理学测量细胞外酸化表明,表达M2的细胞质子外流发生了改变,金刚烷胺的添加可以使质子梯度重新建立。由M2表达产生的生长障碍表型用于开发高容量筛选测定法,该测定法鉴定了具有与金刚烷胺相似的抗病毒谱的新型抑制剂。

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