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Attenuating Mutations of the Matrix Gene of Influenza A/WSN/33 Virus

机译:减轻A / WSN / 33流感病毒基质基因的突变

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摘要

The matrix protein (M1) of influenza virus plays an essential role in viral replication. Our previous studies have shown that basic amino acids 101RKLKR105 of M1 are involved in RNP binding and nuclear localization. For the present work, the functions of 101RKLKR105 were studied by introducing mutations into the M gene of influenza virus A/WSN/33 by reverse genetic methods. Individual substitution, R101S or R105S, had a minimal effect on viral replication. In contrast, the double mutation R101S-R105S was synergistic and resulted in temperature sensitivity reflected by reduced viral replication at a restrictive temperature. To investigate the in vivo effect on infection, BALB/c mice were infected with either A/WSN/33 wild-type (Wt) or mutant viruses and assessed for signs of illness, viral replication in the lungs, and survival rates. The results from mouse studies indicated that the R101S-R105S double mutant virus was strongly attenuated, while single mutant viruses R101S and R105S were minimally attenuated compared to A/WSN33 Wt under the same conditions. In challenge studies, mice immunized by infection with R101S-R105S were fully protected from lethal challenge with A/WSN/33. The replication and attenuating properties of R101S-R105S suggest its potential in development of live influenza virus vaccines.
机译:流感病毒的基质蛋白(M1)在病毒复制中起重要作用。我们以前的研究表明,M1的碱性氨基酸101RKLKR105与RNP结合和核定位有关。对于目前的工作,通过反向遗传方法将突变引入流感病毒A / WSN / 33的M基因中来研究101RKLKR105的功能。 R101S或R105S单个取代对病毒复制的影响很小。相反,双突变R101S-R105S具有协同作用,并通过在限制性温度下病毒复制减少而反映出温度敏感性。为了研究体内对感染的影响,将BALB / c小鼠感染了A / WSN / 33野生型(Wt)或突变病毒,并评估了疾病迹象,肺部病毒复制和存活率。小鼠研究的结果表明,在相同条件下,与A / WSN33 Wt相比,R101S-R105S双重突变病毒被强烈减毒,而单个突变病毒R101S和R105S被减毒最小。在攻击研究中,用R101S-R105S感染免疫的小鼠受到A / WSN / 33的致命攻击的完全保护。 R101S-R105S的复制和减毒特性表明其在活流感病毒疫苗开发中的潜力。

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    Liu, Teresa; Ye, Zhiping;

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  • 年度 2005
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  • 正文语种 en
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