首页> 美国卫生研究院文献>Journal of Virology >Equine Infectious Anemia Virus Envelope Evolution In Vivo during Persistent Infection Progressively Increases Resistance to In Vitro Serum Antibody Neutralization as a Dominant Phenotype
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Equine Infectious Anemia Virus Envelope Evolution In Vivo during Persistent Infection Progressively Increases Resistance to In Vitro Serum Antibody Neutralization as a Dominant Phenotype

机译:在持久性感染期间体内马传染性贫血病毒信封的进化逐渐增加了对体外血清抗体中和的抵抗力这是一个主要的表型。

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摘要

Equine infectious anemia virus (EIAV) infection of horses is characterized by well-defined waves of viremia associated with the sequential evolution of distinct viral populations displaying extensive envelope gp90 variation; however, a correlation of in vivo envelope evolution with in vitro serum neutralization phenotype remains undefined. Therefore, the goal of the present study was to utilize a previously defined panel of natural variant EIAV envelope isolates from sequential febrile episodes to characterize the effects of envelope variation during persistent infection on viral neutralization phenotypes and to define the determinants of EIAV envelope neutralization specificity. To assess the neutralization phenotypes of the sequential EIAV envelope variants, we determined the sensitivity of five variant envelopes to neutralization by a longitudinal panel of immune serum from the source infected pony. The results indicated that the evolution of the EIAV envelope sequences observed during sequential febrile episodes produced an increasingly neutralization-resistant phenotype. To further define the envelope determinants of EIAV neutralization specificity, we examined the neutralization properties of a panel of chimeric envelope constructs derived from reciprocal envelope domain exchanges between selected neutralization-sensitive and neutralization-resistant envelope variants. These results indicated that the EIAV gp90 V3 and V4 domains individually conferred serum neutralization resistance while other envelope segments in addition to V3 and V4 were evidently required for conferring total serum neutralization sensitivity. These data clearly demonstrate for the first time the influence of sequential gp90 variation during persistent infection in increasing envelope neutralization resistance, identify the gp90 V3 and V4 domains as the principal determinants of antibody neutralization resistance, and indicate distinct complex cooperative envelope domain interactions in defining sensitivity to serum antibody neutralization.
机译:马的马传染性贫血病毒(EIAV)感染的特征是,病毒血症的定义明确,与不同病毒种群的顺序进化有关,表现出广泛的gp90变异;然而,体内包膜进化与体外血清中和表型之间的相关性仍不确定。因此,本研究的目的是利用先前定义的一系列连续发热事件中的天然变体EIAV包膜分离物来表征持续感染期间包膜变异对病毒中和表型的影响,并确定EIAV包膜中和特异性的决定因素。为了评估连续的EIAV包膜变体的中和表型,我们确定了五个变体包膜对来自感染小马的免疫血清的纵队进行中和的敏感性。结果表明,在连续的高热发作期间观察到的EIAV包膜序列的进化产生了越来越多的抗中和性表型。为了进一步定义EIAV中和特异性的包膜决定因素,我们检查了一组嵌合包膜构建体的中和特性,这些嵌合包膜构建体源自选定的中和敏感和抗中和包膜变体之间的相互包膜域交换。这些结果表明,EIAV gp90 V3和V4结构域分别赋予了血清中和抗性,而显然除了V3和V4之外,其他包膜片段也赋予了血清总中和敏感性。这些数据清楚地首次证明了持续感染过程中连续gp90变异对包膜中和抗性增加的影响,确定了gp90 V3和V4结构域是抗体中和抗性的主要决定因素,并表明了不同的复杂协同包膜结构域相互作用定义了敏感性血清抗体中和。

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