首页> 美国卫生研究院文献>Journal of Virology >Biologic Studies of Chimeras of Highly and Moderately Virulent Molecular Clones of Simian Immunodeficiency Virus SIVsmPBj Suggest a Critical Role for Envelope in Acute AIDS Virus Pathogenesis
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Biologic Studies of Chimeras of Highly and Moderately Virulent Molecular Clones of Simian Immunodeficiency Virus SIVsmPBj Suggest a Critical Role for Envelope in Acute AIDS Virus Pathogenesis

机译:猿猴免疫缺陷病毒SIVsmPBj的高中度毒性分子克隆嵌合体的生物学研究表明信封在急性AIDS病毒发病中的关键作用

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摘要

Previous studies identified three molecular clones of the acutely pathogenic SIVsmPBj strain that varied in terms of relative in vivo pathogenicity. One clone, SIVsmPBj6.6, reproducibly induced a rapidly fatal disease in pigtailed macaques. In contrast, a highly related clone (SIVsmPBj6.9) was only minimally pathogenic in macaques. PBj6.6 and PBj6.9 shared a tyrosine substitution at position 17 in the Nef protein that is a major determinant of virulence but differed at one residue in Vpx (C89R), three residues within the envelope (D119G, R871G, G872R), and a single residue in Nef (F252L). SIVsmPBj6.9 was less efficient in inducing proliferation of resting macaque peripheral blood mononuclear cells in vitro than SIVsmPBj6.6 and exhibited a marked reduction in infectivity relative to SIVsmPBj6.6. Chimeric viruses for each of these variable residues were constructed, and their biologic properties were compared to those of the parental strains. Differences in Vpx and Nef did not alter the basic biologic phenotype of the chimeras. However, the D119G substitution in the envelope of SIVsmPBj6.9 was associated with a marked reduction in the infectivity of this virus relative to SIVsmPBj6.6. An associated processing defect in gp160 of SIVsmPBj6.9 and chimeras expressing the D119G substitution suggests that a reduction in virion envelope incorporation is the mechanistic basis for reduced virion infectivity. In vivo studies revealed that substitution of the PBj6.9 amino acid into PBj6.6 (D119) abrogated the pathogenicity of this previously pathogenic virus. Introduction of the PBj6.9 G119, however, did not confer full virulence to the parental PBj6.9 virus, implicating one or all of the other four substitutions in the virulence of SIVsmPBj6.6.
机译:先前的研究确定了急性致病性SIVsmPBj菌株的三个分子克隆,它们在体内相对致病性方面有所不同。一个克隆SIVsmPBj6.6可再现性地在尾巴猕猴中引起快速致命的疾病。相反,高度相关的克隆(SIVsmPBj6.9)在猕猴中的致病性极低。 PBj6.6和PBj6.9在Nef蛋白的第17位共有一个酪氨酸取代,这是毒力的主要决定因素,但在Vpx(C89R)的一个残基,包膜的三个残基(D119G,R871G,G872R)和Nef(F252L)中有一个残基。与SIVsmPBj6.6相比,SIVsmPBj6.9在体外诱导静息猕猴外周血单核细胞增殖的效率较低,并且相对于SIVsmPBj6.6而言,其感染力明显降低。构建每个可变残基的嵌合病毒,并将其生物学特性与亲本菌株的生物学特性进行比较。 Vpx和Nef的差异不会改变嵌合体的基本生物学表型。但是,相对于SIVsmPBj6.6,SIVsmPBj6.9包膜中的D119G取代与该病毒的感染力显着降低有关。 SIVsmPBj6.9和表达D119G取代的嵌合体在gp160中存在相关的加工缺陷,这表明减少病毒体包膜掺入是降低病毒体感染性的机制基础。体内研究表明,将PBj6.9氨基酸替换为PBj6.6(D119)可废除这种先前致病的病毒的致病性。然而,PBj6.9 G119的引入并未赋予母本PBj6.9病毒以完全毒力,这牵涉到SIVsmPBj6.6的毒力中的其他四个替代之一或全部。

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