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持续感染博尔纳病病毒(BDV)的神经胶质细胞系的特性:神经营养因子对BDV蛋白和RNA表达的影响。

Characterization of a glial cell line persistently infected with borna disease virus (BDV): influence of neurotrophic factors on BDV protein and RNA expression.

作者信息

Carbone K M, Rubin S A, Sierra-Honigmann A M, Lederman H M

机构信息

Department of Medicine, Johns Hopkins University School of Medicine, Baltimore, Maryland 21287.

出版信息

J Virol. 1993 Mar;67(3):1453-60. doi: 10.1128/JVI.67.3.1453-1460.1993.

Abstract

Borna disease virus (BDV) infects cells of the nervous system in a wide range of species. Previous work suggests that there are differences in BDV replication in neuronal cells and glial cells. Many neurons are lysed by the immunopathologic response to BDV; lysis of dentate gyrus neurons in the absence of encephalitis is seen in rats inoculated with BDV as neonates. In contrast, persistently BDV-infected astrocytes increase over the course of BDV infection. Therefore, we compared BDV replication in neuronal (SK-N-SH and SK-N-SHEP) and astrocytic (C6) cell lines. While SK-N-SH cells produced more infectious virions per cell, the C6 cells contained more BDV proteins and RNA. BDV sequences in the supernatants of both cell types were identified, despite low titers of infectious virus, suggesting the release of incomplete virions into the medium. C6 cells secreted a factor or factors into the medium that enhanced the production of BDV proteins and RNA in other cell lines. In addition, nerve growth factor treatment produced the same enhancement. Thus, BDV replication in certain neural cells in vitro may be linked to the production of cell-specific factors which affect viral replication.

摘要

博尔纳病病毒(BDV)可感染多种物种的神经系统细胞。先前的研究表明,BDV在神经元细胞和神经胶质细胞中的复制存在差异。许多神经元会因对BDV的免疫病理反应而裂解;在新生期接种BDV的大鼠中,可观察到在无脑炎的情况下齿状回神经元的裂解。相比之下,持续感染BDV的星形胶质细胞在BDV感染过程中会增多。因此,我们比较了BDV在神经元细胞系(SK-N-SH和SK-N-SHEP)和星形胶质细胞系(C6)中的复制情况。虽然SK-N-SH细胞每个细胞产生的感染性病毒粒子更多,但C6细胞含有更多的BDV蛋白和RNA。尽管感染性病毒滴度较低,但两种细胞类型的上清液中均鉴定出了BDV序列,这表明有不完整的病毒粒子释放到培养基中。C6细胞向培养基中分泌了一种或多种因子,这些因子可增强其他细胞系中BDV蛋白和RNA的产生。此外,神经生长因子处理也产生了同样的增强作用。因此,体外某些神经细胞中的BDV复制可能与影响病毒复制的细胞特异性因子的产生有关。

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