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首页> 外文期刊>Virology >Nucleocapsid protein zinc-finger mutants of simian immunodeficiency virus strain mne produce virions that are replication defective in vitro and in vivo.
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Nucleocapsid protein zinc-finger mutants of simian immunodeficiency virus strain mne produce virions that are replication defective in vitro and in vivo.

机译:猿免疫缺陷病毒株mne的核衣壳蛋白锌指突变体产生在体外和体内复制缺陷的病毒体。

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摘要

All retroviruses (except the spumaretroviruses) contain a nucleocapsid (NC) protein that encodes one or two copies of the Zn2+-finger sequence -Cys-X2-Cys-X4-His-X4-Cys-. This region has been shown to be essential for recognition and packaging of the genomic RNA during virion particle assembly. Additionally, this region has been shown to be involved in early infection events in a wide spectrum of retroviruses, including mammalian type C [e.g., murine leukemia virus (MuLV)], human immunodeficiency virus type 1 (HIV-1), Rous sarcoma virus, and other retroviruses. Mutations in the two Zn2+-fingers of the NC protein of simian immunodeficiency virus strain Mne [SIV(Mne)] have been generated. The resulting virions contained the normal complement of processed viral proteins with densities indistinguishable from wild-type SIV(Mne). All of the mutants had electron micrograph morphologies similar to those of immature particles observed in wild-type preparations. RNA packaging was less affected by mutations in the NC protein of SIV(Mne) than has been observed for similar mutants in the MuLV and HIV-1 systems. Nevertheless, in vitro replication of SIV(Mne) NC mutants was impaired to levels comparable to those observed for MuLV and HIV-1 NC mutants; replication defective NC mutants are typically 10(5)- to 10(6)-fold less infectious than similar levels of wild-type virus. One mutant, DeltaCys33-Cys36, was also found to be noninfectious in vivo when mutant virus was administered intravenously to a pig-tailed macaque. NC mutations can therefore be used to generate replication defective virions for candidate vaccines in the SIV macaque model for primate lentiviral diseases.
机译:所有逆转录病毒(除了盘状逆转录病毒)都包含一个核衣壳(NC)蛋白,该蛋白编码一或两个拷贝的Zn2 +-手指序列-Cys-X2-Cys-X4-His-X4-Cys-。已经表明该区域对于在病毒体颗粒组装期间识别和包装基因组RNA是必不可少的。此外,该区域已显示出参与多种逆转录病毒的早期感染事件,这些逆转录病毒包括哺乳动物C型[例如鼠白血病病毒(MuLV)],人类1型免疫缺陷病毒(HIV-1),劳斯肉瘤病毒和其他逆转录病毒。猿免疫缺陷病毒株Mne [SIV(Mne)]的NC蛋白的两个Zn2 +指已产生突变。产生的病毒体包含加工病毒蛋白的正常补体,其密度与野生型SIV(Mne)没有区别。所有突变体均具有类似于在野生型制剂中观察到的未成熟颗粒的电子显微照片形态。与在MuLV和HIV-1系统中的类似突变体相比,RNA的包装受SIV(Mne)NC蛋白突变的影响较小。然而,SIV(Mne)NC突变体的体外复制被削弱到与MuLV和HIV-1 NC突变体观察到的水平相当的水平。复制缺陷的NC突变体的感染力通常比野生型病毒的相似水平低10(5)-10(6)倍。当将突变病毒静脉内施用于猪尾猕猴时,还发现一种突变体DeltaCys33-Cys36在体内无感染性。因此,NC突变可用于在灵长类慢病毒疾病的SIV猕猴模型中为候选疫苗生成复制缺陷型病毒体。

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