Generation and characterization of interferon-beta-resistant H1N1 influenza A virus.

IF 1.1 4区 医学 Q4 VIROLOGY
Brady T Hickerson, Simone E Adams, Nicolai V Bovin, Raymond P Donnelly, Natalia A Ilyushina
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引用次数: 0

Abstract

Interferons (IFNs) mediate innate antiviral activity against many types of viruses, including influenza viruses. In light of their potential use as anti-influenza agents, we examined whether resistance to these host antiviral proteins can develop. We generated IFN-β-resistant variants of the A/California/04/09 (H1N1) virus by serial passage in a human airway epithelial cell line, Calu-3, under IFN-β selective pressure. The combination of specific mutations (i.e., L373I in PB1, K154E1, D222G1, I56V2, and V122I2 in HA, and M269I in NA) correlated with decreased ability of the virus to induce expression of IFN (IFNB1, IFNL1, and IFNL2/3) and IFN-stimulated genes (IFIT1, IFIT3, OAS1, IRF7, and MX1) by target respiratory epithelial cells. In addition, the IFN-induced mutations were associated with decreased HA binding affinity to α2,6 sialyl receptors, reduced NA enzyme catalytic activity, and decreased polymerase transcription activity. Our findings demonstrate that the mutations in the influenza HA, NA, and PB1 proteins induced by IFN-b selective pressure significantly increase viral ability to productively infect and replicate in host cells. Keywords: influenza A virus; interferon-β; lung epithelial cells; interferon response.

干扰素- β耐药甲型H1N1流感病毒的产生和特性
干扰素介导对多种病毒(包括流感病毒)的先天抗病毒活性。鉴于它们作为抗流感药物的潜在用途,我们研究了对这些宿主抗病毒蛋白的耐药性是否会产生。我们在IFN-β选择压力下,通过在人气道上皮细胞系Calu-3中连续传代,产生了A/California/04/09 (H1N1)病毒的IFN-β抗性变体。特异性突变(即HA中PB1、K154E1、D222G1、I56V2和V122I2中的L373I和NA中的M269I)的组合与病毒诱导IFN (IFNB1、IFNL1和IFNL2/3)和IFN刺激基因(IFIT1、IFIT3、OAS1、IRF7和MX1)在靶呼吸道上皮细胞中的表达能力下降相关。此外,ifn诱导的突变与HA与α2,6唾液酸受体结合亲和力降低、NA酶催化活性降低和聚合酶转录活性降低有关。我们的研究结果表明,由IFN-b选择压力诱导的流感HA、NA和PB1蛋白突变显著增加了病毒在宿主细胞中有效感染和复制的能力。关键词:甲型流感病毒;干扰素-β;肺上皮细胞;干扰素反应。
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来源期刊
Acta virologica
Acta virologica 医学-病毒学
CiteScore
3.10
自引率
11.80%
发文量
43
审稿时长
>12 weeks
期刊介绍: Acta virologica is an international journal of predominantly molecular and cellular virology. Acta virologica aims to publish papers reporting original results of fundamental and applied research mainly on human, animal and plant viruses at cellular and molecular level. As a matter of tradition, also rickettsiae are included. Areas of interest are virus structure and morphology, molecular biology of virus-cell interactions, molecular genetics of viruses, pathogenesis of viral diseases, viral immunology, vaccines, antiviral drugs and viral diagnostics.
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