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源自自失活泡沫病毒载体的具有复制能力的回复突变体的动力学及特性

Kinetics and characteristics of replication-competent revertants derived from self-inactivating foamy virus vectors.

作者信息

Bastone P, Löchelt M

机构信息

Abt. Genomveränderung und Carcinogenese, Forschungsschwerpunkt Infektion und Krebs, Deutsches Krebsforschungszentrum, Heidelberg, Germany.

出版信息

Gene Ther. 2004 Mar;11(5):465-73. doi: 10.1038/sj.gt.3302185.

Abstract

In this study, self-inactivating (SIN) retroviral vectors based on feline foamy virus (FFV) were constructed and analysed. The FFV SIN vectors were devoid of the core FFV long terminal repeat promoter plus upstream sequences but contained all structural and regulatory genes. This design allowed sensitive detection of replication-competent revertants (RCRs). The FFV SIN vectors efficiently transduced the green fluorescence protein into recipient cells. However, RCRs appeared after serial passages of transduced cells. In all RCR clones analysed, parts of the heterologous cytomegalovirus immediate early promoter, originally driving expression of the FFV vector genome, were taken up to restore the deleted SIN promoter function required for replication competence. The RCRs were strongly reduced in replication capacity compared with the parental replication-competent vectors containing the FFV promoter. In all RCR genomes analysed, the uptake of the heterologous promoter was accompanied by deletion of almost the complete marker gene. Although the RCRs described in this study may not have the capacity to spread in humans and animals, they may pose a theoretical risk, for instance during transduction of haematopoietic stem cells. Thus, FV-based SIN vectors require additional genetic modifications in order to avoid RCRs.

摘要

在本研究中,构建并分析了基于猫泡沫病毒(FFV)的自失活(SIN)逆转录病毒载体。FFV SIN载体缺失核心FFV长末端重复启动子及其上游序列,但包含所有结构和调控基因。这种设计允许对复制能力回复株(RCR)进行灵敏检测。FFV SIN载体能有效地将绿色荧光蛋白转导至受体细胞中。然而,转导细胞经连续传代后出现了RCR。在所有分析的RCR克隆中,原本驱动FFV载体基因组表达的部分异源巨细胞病毒立即早期启动子被纳入,以恢复复制能力所需的缺失SIN启动子功能。与含有FFV启动子的亲代复制能力载体相比,RCR的复制能力大幅降低。在所有分析的RCR基因组中,异源启动子的纳入伴随着几乎整个标记基因的缺失。尽管本研究中描述的RCR可能没有在人和动物中传播的能力,但它们可能带来理论风险,例如在造血干细胞转导过程中。因此,基于FV的SIN载体需要进行额外的基因改造以避免出现RCR。

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