首页> 美国卫生研究院文献>Journal of Virology >A single amino acid substitution in a hydrophobic domain causes temperature-sensitive cell-surface transport of a mutant viral glycoprotein.
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A single amino acid substitution in a hydrophobic domain causes temperature-sensitive cell-surface transport of a mutant viral glycoprotein.

机译:疏水域中的单个氨基酸取代引起突变型病毒糖蛋白的温度敏感细胞表面转运。

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摘要

DNA sequences were determined for three cDNA clones encoding vesicular stomatitis virus glycoproteins from the tsO45 mutant (which encodes a glycoprotein that exhibits temperature-sensitive cell-surface transport), the wild-type parent strain, and a spontaneous revertant of tsO45. The DNA sequence analysis showed that as many as three amino acid changes could be responsible for the transport defect. By recombining the cDNA clones in vitro and expressing the recombinants in COS cells, we were able to trace the critical lesion in tsO45 to a single substitution of a polar amino acid (serine) for a hydrophobic amino acid (phenylalanine) in a hydrophobic domain. We suggest that this nonconservative substitution may block protein transport by causing protein denaturation at the nonpermissive temperature. Comparison of the predicted glycoprotein sequences from two vesicular stomatitis virus strains suggests a possible basis for the differential carbohydrate requirement in transport of the two glycoproteins.
机译:确定了来自tsO45突变体(编码表现出温度敏感的细胞表面转运的糖蛋白),野生型亲本菌株和tsO45的自发回复株的三个编码水泡性口炎病毒糖蛋白的cDNA克隆的DNA序列。 DNA序列分析表明,多达三个氨基酸变化可能是运输缺陷的原因。通过在体外重组cDNA克隆并在COS细胞中表达重组子,我们能够追踪tsO45中的关键病变,以疏水域中疏水性氨基酸(苯丙氨酸)的极性氨基酸(丝氨酸)单取代。我们建议这种非保守取代可能会通过在非容许温度下引起蛋白质变性而阻止蛋白质运输。对来自两种水泡性口炎病毒株的预测糖蛋白序列的比较,为两种糖蛋白运输中不同的碳水化合物需求提供了可能的基础。

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