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泡沫病毒-腺病毒杂交载体

Foamy virus--adenovirus hybrid vectors.

作者信息

Picard-Maureau M, Kreppel F, Lindemann D, Juretzek T, Herchenröder O, Rethwilm A, Kochanek S, Heinkelein M

机构信息

Institut für Virologie und Immunbiologie, Universität Würzburg, Germany.

出版信息

Gene Ther. 2004 Apr;11(8):722-8. doi: 10.1038/sj.gt.3302216.

Abstract

To confer adenovirus vectors (AdV), the feature of integration into the host cell genome hybrid vectors were characterized in vitro, which express vectors derived from the prototypic foamy virus (FV) in the backbone of a high-capacity AdV. FVs constitute a subfamily of retroviruses with a distinct replication pathway and no known pathogenicity. In the absence of envelope glycoprotein, the prototypic FV behaves like a retrotransposon, while it behaves like an exogenous retrovirus in its presence. Two principle types of vectors, which either allows the intracellular (HC-FAD-7) or, in addition, the extracellular (HC-FAD-2) pathway were constructed. In both chimeras the expression of the FV vector was controlled by the tetracycline-regulatable system. Hybrids were produced close to 10(10) infectious units/ml. By Southern blotting, the functionality of the hybrid vectors to generate host cell genomic integrants was shown. However, the efficiency of HC-FAD-7 to establish stable transgene expression was rather low, while around 70% of cells were stably transduced in secondary round following primary transduction with HC-FAD-2 at an MOI of 100. Given the benign characteristics of high-capacity adenovirus and FV vectors, hybrids based on HC-FAD-2 are probably suited for an in vivo application.

摘要

为赋予腺病毒载体(AdV)整合到宿主细胞基因组的特性,对杂交载体进行了体外特性分析,这些杂交载体在高容量腺病毒骨架中表达源自原型泡沫病毒(FV)的载体。FV构成逆转录病毒的一个亚科,具有独特的复制途径且无已知致病性。在没有包膜糖蛋白的情况下,原型FV的行为类似于逆转座子,而在有包膜糖蛋白的情况下,其行为类似于外源性逆转录病毒。构建了两种主要类型的载体,一种允许细胞内途径(HC-FAD-7),另一种还允许细胞外途径(HC-FAD-2)。在这两种嵌合体中,FV载体的表达均由四环素可调节系统控制。杂交载体的产量接近10¹⁰感染单位/毫升。通过Southern印迹法,显示了杂交载体产生宿主细胞基因组整合体的功能。然而,HC-FAD-7建立稳定转基因表达的效率相当低,而在用MOI为100的HC-FAD-2进行初次转导后的第二轮转导中,约70%的细胞被稳定转导。鉴于高容量腺病毒和FV载体的良性特性,基于HC-FAD-2的杂交载体可能适合体内应用。

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