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优化后的猫免疫缺陷病毒载体对非分裂细胞的高效转导

Efficient transduction of nondividing cells by optimized feline immunodeficiency virus vectors.

作者信息

Curran M A, Kaiser S M, Achacoso P L, Nolan G P

机构信息

Program in Immunology, Stanford University Medical Center, California 94305-5332, USA.

出版信息

Mol Ther. 2000 Jan;1(1):31-8. doi: 10.1006/mthe.1999.0007.

Abstract

Second- and third-generation three-plasmid vector systems, termed FELIX, were constructed from feline immunodeficiency virus (FIV). To enhance vector production, the weak FIV long terminal repeat promoter was replaced with the human cytomegalovirus enhancer/promoter. To construct a minimal system in which Gag-Pol was the only viral protein present, the cytoplasmic transport element was used in place of the FIV Rev-RRE system to facilitate nuclear export of Gag-Pol and the transfer vector. Unconcentrated vector titers routinely exceeded 1 x 10(6) IU/mL for most constructs tested. Second- and optimized third-generation vectors were capable of efficiently infecting G1/S- and G2/M-arrested cells. FIV-based FELIX vectors transduced human dendritic cells, hepatocytes, and aortic smooth muscle with efficiencies similar to that of a control 3T3 cell line. All three of these primary cell types were transducible by both the second- and third-generation FELIX vectors, demonstrating that FIV Gag-Pol alone contains the determinants necessary for transduction of primary cells. In cross-packaging tests, we observed that HIV Gag-Pol does not substantially package FIV vectors; consequently, use of such vectors in human immunodeficiency virus-infected cells should not lead to efficient mobilization of the inserted gene. Thus, this FIV-based vector system offers high efficiency and stable delivery of genes to numerous nondividing and primary cell types, opening new avenues for biological inquiry into normal human cells.

摘要

第二代和第三代三质粒载体系统(称为FELIX)是由猫免疫缺陷病毒(FIV)构建而成。为提高载体产量,将弱的FIV长末端重复启动子替换为人巨细胞病毒增强子/启动子。为构建一个仅存在Gag-Pol作为唯一病毒蛋白的最小系统,使用细胞质转运元件替代FIV Rev-RRE系统,以促进Gag-Pol和转移载体的核输出。对于大多数测试构建体,未浓缩的载体滴度通常超过1×10⁶ IU/mL。第二代和优化后的第三代载体能够有效感染G1/S期和G2/M期阻滞的细胞。基于FIV的FELIX载体转导人树突状细胞、肝细胞和主动脉平滑肌的效率与对照3T3细胞系相似。第二代和第三代FELIX载体均可转导这三种原代细胞类型,表明仅FIV Gag-Pol就包含转导原代细胞所需的决定因素。在交叉包装试验中,我们观察到HIV Gag-Pol基本上不包装FIV载体;因此,在人类免疫缺陷病毒感染的细胞中使用此类载体不应导致插入基因的有效动员。因此,这种基于FIV的载体系统为众多非分裂和原代细胞类型提供了高效且稳定的基因递送,为对正常人类细胞的生物学研究开辟了新途径。

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