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经过基因工程改造的重组1型单纯疱疹病毒,可靶向结合表达促红细胞生成素受体的细胞。

Recombinant herpes simplex virus type 1 engineered for targeted binding to erythropoietin receptor-bearing cells.

作者信息

Laquerre S, Anderson D B, Stolz D B, Glorioso J C

机构信息

Departments of Molecular Genetics and Biochemistry, University of Pittsburgh School of Medicine, Pittsburgh, Pennsylvania 15261, USA.

出版信息

J Virol. 1998 Dec;72(12):9683-97. doi: 10.1128/JVI.72.12.9683-9697.1998.

Abstract

The utility of recombinant herpes simplex virus type 1 (HSV-1) vectors may be expanded by manipulation of the virus envelope to achieve cell-specific gene delivery. To this end, an HSV-1 mutant virus deleted for glycoprotein C (gC) and the heparan sulfate binding domain of gB (KgBpK-gC-) was engineered to encode different chimeric proteins composed of N-terminally truncated forms of gC and the full-length erythropoietin hormone (EPO). Biochemical analyses demonstrated that one gC-EPO chimeric molecule (gCEPO2) was posttranslationally processed, incorporated into recombinant HSV-1 virus (KgBpK-gCEPO2), and neutralized with antibodies directed against gC or EPO in a complement-dependent manner. Moreover, KgBpK-gCEPO2 recombinant virus was specifically retained on a soluble EPO receptor column, was neutralized by soluble EPO receptor, and stimulated proliferation of FD-EPO cells, an EPO growth-dependent cell line. FD-EPO cells were nevertheless refractory to productive infection by both wild-type HSV-1 and recombinant KgBpK-gCEPO2 virus. Transmission electron microscopy of FD-EPO cells infected with KgBpK-gCEPO2 showed virus endocytosis leading to aborted infection. Despite the lack of productive infection, these data provide the first evidence of targeted HSV-1 binding to a non-HSV-1 cell surface receptor.

摘要

通过对病毒包膜进行操控以实现细胞特异性基因递送,可扩大重组1型单纯疱疹病毒(HSV-1)载体的应用范围。为此,构建了一种缺失糖蛋白C(gC)和gB的硫酸乙酰肝素结合域的HSV-1突变病毒(KgBpK-gC-),使其编码由N端截短形式的gC和全长促红细胞生成素激素(EPO)组成的不同嵌合蛋白。生化分析表明,一种gC-EPO嵌合分子(gCEPO2)在翻译后被加工处理,整合到重组HSV-1病毒(KgBpK-gCEPO2)中,并以补体依赖的方式被针对gC或EPO的抗体中和。此外,KgBpK-gCEPO2重组病毒特异性地保留在可溶性EPO受体柱上,被可溶性EPO受体中和,并刺激FD-EPO细胞(一种依赖EPO生长的细胞系)的增殖。然而,FD-EPO细胞对野生型HSV-1和重组KgBpK-gCEPO2病毒的有效感染均具有抗性。对感染了KgBpK-gCEPO2的FD-EPO细胞进行透射电子显微镜观察显示,病毒内吞作用导致感染中止。尽管缺乏有效感染,但这些数据首次证明了靶向性HSV-1与非HSV-1细胞表面受体的结合。

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