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首页> 外文期刊>Virology >Clustered Charge-to-Alanine Mutagenesis of Human Respiratory Syncytial Virus Polymerase Generates Temperature-Sensitive Viruses
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Clustered Charge-to-Alanine Mutagenesis of Human Respiratory Syncytial Virus Polymerase Generates Temperature-Sensitive Viruses

机译:人类呼吸道合胞病毒聚合酶的电荷-丙氨酸成簇诱变产生温度敏感病毒。

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Clustered charge-to-alanine mutagenesis was performed on the large (L) polymerase protein of human respiratory syncytial virus to identify charged residues in the L protein that are important for viral RNA synthesis and to generate temperature-sensitive viruses. Clusters of three, four, and five charged residues throughout the entire L protein were substituted with alanines. A minigenome replicon assay was used to determine the functions of the mutant L proteins and to identify mutations that caused temperature sensitivity by comparing the level of reporter gene expression at 39 and 33 ℃. Charge-to-alanine mutations were introduced into an antigenomic cDNA derived from RSV A2 strain to recover infectious viruses. Of the 27 charge-to-alanine mutations, 17 recombinant viruses (63%) were obtained. Seven mutants (41%) exhibited small plaque morphologies and/or temperature-sensitive growth in tissue culture. To generate mutant viruses with more temperature-sensitive and attenuated phenotypes, several clusters of charge-to-alanine substitutions were combined. Five combination mutants were recovered that exhibited shut-off temperature ranging from 36 to 39 ℃ in tissue culture and restricted replication in the respiratory tracts of cotton rats.
机译:对人呼吸道合胞病毒的大(L)聚合酶蛋白进行了聚类的电荷-丙氨酸诱变,以鉴定L蛋白中对病毒RNA合成很重要并产生温度敏感性病毒的带电残基。整个L蛋白中三个,四个和五个带电残基的簇被丙氨酸取代。通过比较39和33℃的报道基因表达水平,使用微型基因组复制子测定法确定突变L蛋白的功能并鉴定引起温度敏感性的突变。将电荷-丙氨酸突变引入源自RSV A2株的反基因组cDNA中以恢复感染性病毒。在27个电荷向丙氨酸的突变中,获得了17种重组病毒(63%)。七个突变体(41%)在组织培养中表现出小的噬菌斑形态和/或温度敏感性生长。为了产生对温度更敏感和减弱的表型的突变病毒,将几个电荷-丙氨酸取代簇组合在一起。回收了5个组合突变体,它们在组织培养中的关闭温度在36至39℃之间,在棉鼠的呼吸道中复制受到限制。

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