首页> 美国卫生研究院文献>Journal of Virology >Mutations in Human Parainfluenza Virus Type 3 Hemagglutinin-Neuraminidase Causing Increased Receptor Binding Activity and Resistance to the Transition State Sialic Acid Analog 4-GU-DANA (Zanamivir)
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Mutations in Human Parainfluenza Virus Type 3 Hemagglutinin-Neuraminidase Causing Increased Receptor Binding Activity and Resistance to the Transition State Sialic Acid Analog 4-GU-DANA (Zanamivir)

机译:人类副流感病毒3型血凝素神经氨酸酶的突变引起受体结合活性增加和对过渡态唾液酸类似物4-GU-DANA(扎那米韦)的抗性

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摘要

Entry and fusion of human parainfluenza virus type 3 (HPF3) require the interaction of the viral hemagglutinin-neuraminidase (HN) glycoprotein with its sialic acid receptor. 4-GU-DANA, a potent inhibitor of influenza virus neuraminidase, inhibits not only HPF3 neuraminidase but also the receptor binding activity of HPF3 HN and thus its ability to promote attachment and fusion. We previously generated a 4-GU-DANA-resistant HPF3 virus variant (ZM1) with a markedly fusogenic plaque morphology that harbored two HN gene mutations resulting in amino acid alterations. The present study using cells that express the individual mutations of ZM1 HN shows that one of these mutations is responsible for the increases in receptor binding and neuraminidase activities as well as the diminished sensitivity of both activities to the inhibitory effect of 4-GU-DANA. To examine the hypothesis that increased receptor binding avidity underlies 4-GU-DANA resistance, parallel studies were carried out on the high-affinity HN variant virus C22 and cells expressing the C22 variant HN. This variant also exhibited reduced sensitivity to 4-GU-DANA in terms of receptor binding and infectivity but without concomitant changes in the neuraminidase activity of HN. Another high-affinity HN variant, C0, was not resistant in terms of infectivity; however, a small increase in the receptor binding activity of C0 HN and a partial resistance of this activity to 4-GU-DANA were revealed by sensitive methods that we developed. In each virus variant, one mutation in HN accounted for both increased receptor binding avidity and 4-GU-DANA resistance; the higher affinity for the receptor overcomes the inhibitory effect of 4-GU-DANA. Thus, in contrast to influenza viruses for which 4-GU-DANA escape variants include hemagglutinin mutants with decreased receptor binding avidity that promotes virion release, for HPF3, HN mutants with increased receptor binding avidity are those that can escape the growth inhibitory effect of 4-GU-DANA.
机译:人类副流感病毒3型(HPF3)的进入和融合需要病毒血凝素神经氨酸酶(HN)糖蛋白与其唾液酸受体相互作用。 4-GU-DANA,一种有效的流感病毒神经氨酸酶抑制剂,不仅抑制HPF3神经氨酸酶,而且抑制HPF3 HN的受体结合活性,从而抑制其促进附着和融合的能力。我们以前生成了具有4-FU-DANA耐药性的HPF3病毒变异体(ZM1),具有明显的融合噬菌斑形态,其中包含两个导致氨基酸改变的HN基因突变。本研究使用表达ZM1 HN单个突变的细胞表明,这些突变之一负责受体结合和神经氨酸酶活性的增加,以及这两种活性对4-GU-DANA抑制作用的敏感性降低。为了检验假说增加的受体结合亲和力是4-GU-DANA抗性的基础,对高亲和力HN变异病毒C22和表达C22变异HN的细胞进行了平行研究。就受体结合和感染性而言,该变体还显示出对4-GU-DANA的敏感性降低,但是HN的神经氨酸酶活性没有伴随变化。就传染性而言,另一种高亲和力的HN变体C0不具抗性。然而,我们开发的敏感方法揭示了C0 HN受体结合活性的小幅增加以及该活性对4-GU-DANA的部分抗性。在每种病毒变体中,HN中的一个突变导致受体结合亲和力增加和4-GU-DANA抗性增加。对受体的更高亲和力克服了4-GU-DANA的抑制作用。因此,与4-GU-DANA逃避变体包括血凝素突变体(具有降低的受体结合亲和力,促进病毒体释放)的流感病毒相反,对于HPF3,受体结合亲和力增强的HN突变体可以逃避4的生长抑制作用-顾丹娜

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