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利用一种识别酸敏感表位的单克隆抗体#1-30-44,对病毒感染细胞和G cDNA转染细胞产生的狂犬病病毒糖蛋白进行进一步鉴定。

Further characterization of the rabies virus glycoproteins produced by virus-infected and G cDNA-transfected cells using a monoclonal antibody, #1-30-44, which recognizes an acid-sensitive epitope.

作者信息

Kankanamge Pushpa Jenette, Irie Takashi, Shoji Jun'ichi, Tochikura Tadafumi S, Kawai Akihiko

机构信息

Department of Molecular Microbiology, Graduate School of Pharmaceutical Sciences, Kyoto University, Kyoto 606-8501, Japan.

出版信息

Microbiol Immunol. 2003;47(5):337-49. doi: 10.1111/j.1348-0421.2003.tb03405.x.

Abstract

Expression of rabies virus glycoprotein (G) by G cDNA-transfected mammalian cells resulted in the production of only a fusion-negative form. Low pH-dependent fusion activity, however, was seen when the expression was done under control of the T7 promoter with the help of recombinant vaccinia virus (RVV-T7) that provided T7 RNA polymerase. Fusion-inactive G proteins were transported to the cell surface as being detected by a conformational epitope-specific monoclonal antibody (mAb; #1-46-12). The fusion-inactive G proteins were recognized by most of our 13 conformation-specific mAbs, except for one mAb, #1-30-44, that recognized the low pH-sensitive conformational epitope. When the G gene expression was done with the help of RVV-T7, although most G proteins remained in the epitope-negative form, a small fraction of G gene products were 1-30-44 epitope-positive, and cell fusion activity could be seen when cells were exposed to low pH conditions. From these results, we conclude that acquisition of low pH-dependent fusion activity is closely related to structural maturation of the G protein to form the low pH-sensitive 1-30-44 epitope. Such maturation seems to be dependent on certain rabies virus-induced cellular conditions or functions, which might also be provided in part by the vaccinia virus infection. We further assume that expression of G cDNA alone mostly results in the production of mis-folded and/or differently folded forms of G protein, and only a small fraction is correctly folded even under RVV-T7-mediated expression conditions.

摘要

狂犬病毒糖蛋白(G)经G cDNA转染的哺乳动物细胞表达后,仅产生融合阴性形式。然而,当借助提供T7 RNA聚合酶的重组痘苗病毒(RVV-T7)在T7启动子控制下进行表达时,可观察到低pH依赖性融合活性。融合无活性的G蛋白被一种构象表位特异性单克隆抗体(mAb;#1-46-12)检测到转运至细胞表面。除一种识别低pH敏感构象表位的mAb(#1-30-44)外,我们的13种构象特异性mAb中的大多数都能识别融合无活性的G蛋白。当借助RVV-T7进行G基因表达时,尽管大多数G蛋白仍保持表位阴性形式,但一小部分G基因产物为1-30-44表位阳性,并且当细胞暴露于低pH条件下时可观察到细胞融合活性。根据这些结果,我们得出结论,低pH依赖性融合活性的获得与G蛋白形成低pH敏感的1-30-44表位的结构成熟密切相关。这种成熟似乎依赖于某些狂犬病毒诱导的细胞条件或功能,痘苗病毒感染可能也部分提供了这些条件。我们进一步推测,单独的G cDNA表达大多导致产生错误折叠和/或不同折叠形式的G蛋白,即使在RVV-T7介导的表达条件下,也只有一小部分能正确折叠。

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