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水痘-带状疱疹病毒基因14的糖蛋白产物及其在疫苗株(Oka株)中的缺陷性积累

The glycoprotein products of varicella-zoster virus gene 14 and their defective accumulation in a vaccine strain (Oka).

作者信息

Kinchington P R, Ling P, Pensiero M, Moss B, Ruyechan W T, Hay J

机构信息

Department of Biochemistry, Uniformed Services University of the Health Sciences, Bethesda, Maryland, 20814-4799.

出版信息

J Virol. 1990 Sep;64(9):4540-8. doi: 10.1128/JVI.64.9.4540-4548.1990.

Abstract

Many characteristics of the putative protein encoded by varicella-zoster virus (VZV) open reading fram (ORF) 14 indicate that it is a glycoprotein, which has been designated gpV. To identify the protein products of the gene, the coding sequences were placed under the control of the vaccinia virus p7.5 promoter and recombinant vaccinia viruses were constructed. Heterogeneous polypeptides with molecular weights of 95,000 to 105,000 (95K to 105K polypeptides) were expressed in cells infected by a vaccinia virus recombinant (vKIP5) containing ORF 14 from VZV Scott but were not expressed by control vaccinia viruses. These polypeptides were recognized by antibodies present in human sera that contained high levels of anti-VZV antibodies. Conversely, antisera raised in rabbits inoculated with vKIP5 reacted specifically with heterogeneous 95K to 105K polypeptides present in VZV Scott-infected but not uninfected cells; these polypeptides show a patchy plasma membrane fluorescence pattern in VZV Scott-infected cells. These same antisera neutralized VZV strain Scott infectivity in the absence of complement. Endoglycosidase F treatment of isolated gpV polypeptides and tunicamycin treatment of cells infected with the vKIP5 recombinant indicated that the polypeptides were glycosylated. Three sets of data imply that the VZV strain Oka, which has been used to produce a live attenuated virus vaccine, accumulates low levels of gpV polypeptides relative to wild-type strains: (i) blocking of antibodies in human sera with excess VZV Oka-infected cell antigen yielded residual antibodies which were reactive with the 95K to 105K gpV polypeptides expressed in cells infected by VZV strain Scott and by the vKIP5 vaccinia virus recombinant, but not with Oka-infected cell polypeptides; (ii) antisera raised to vKIP5 detected very low levels of reactive polypeptides made in VZV Oka-infected cells and neutralized VZV Oka virus much less efficiently than VZV Scott; and (iii) comparisons of the reactivity of sera from live attenuated virus vaccine vaccinees with sera derived from patients recovering from wild-type infections indicated greatly reduced levels of gpV-specific antibodies in some vaccinees.

摘要

水痘带状疱疹病毒(VZV)开放阅读框(ORF)14编码的假定蛋白的许多特征表明它是一种糖蛋白,已被命名为gpV。为了鉴定该基因的蛋白产物,将编码序列置于痘苗病毒p7.5启动子的控制之下,并构建了重组痘苗病毒。在受含有来自VZV Scott的ORF 14的痘苗病毒重组体(vKIP5)感染的细胞中表达了分子量为95,000至105,000的异源多肽(95K至105K多肽),而对照痘苗病毒则不表达。这些多肽被含有高水平抗VZV抗体的人血清中的抗体识别。相反,用vKIP5接种的兔子产生的抗血清与VZV Scott感染但未感染的细胞中存在的异源95K至105K多肽特异性反应;这些多肽在VZV Scott感染的细胞中显示出斑驳的质膜荧光模式。这些相同的抗血清在没有补体的情况下中和了VZV菌株Scott的感染性。对分离的gpV多肽进行内切糖苷酶F处理以及对感染vKIP5重组体的细胞进行衣霉素处理表明这些多肽是糖基化的。三组数据表明,已用于生产减毒活病毒疫苗的VZV Oka株相对于野生型株积累的gpV多肽水平较低:(i)用过量的VZV Oka感染细胞抗原阻断人血清中的抗体产生了残留抗体,这些残留抗体与在VZV菌株Scott和vKIP5痘苗病毒重组体感染的细胞中表达的95K至105K gpV多肽反应,但与Oka感染细胞的多肽不反应;(ii)针对vKIP5产生的抗血清检测到在VZV Oka感染的细胞中产生的反应性多肽水平非常低,并且中和VZV Oka病毒的效率远低于VZV Scott;(iii)对减毒活病毒疫苗接种者的血清与从野生型感染中康复的患者的血清的反应性进行比较表明,一些接种者中gpV特异性抗体水平大大降低。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/79a8/247925/3c9553380b97/jvirol00064-0515-a.jpg

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