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Minimum Requirements for Efficient Transduction of Dividing and Nondividing Cells by Feline Immunodeficiency Virus Vectors

机译:猫免疫缺陷病毒载体有效转导分裂和非分裂细胞的最低要求

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摘要

The development of gene delivery vectors based on feline immunodeficiency virus (FIV) is an attractive alternative to vectors based on primate sources for the delivery of genes into humans. To investigate the requirements for efficient transduction of dividing and nondividing cells by vector particles based on FIV, a series of packaging and vector constructs was generated for which viral gene expression was minimized and from which unnecessary cis-acting sequences were deleted. Pseudotyped vector particles produced in 293T cells were used to transduce various target cells, including contact-inhibited human skin fibroblasts and growth-arrested HT1080 cells. FIV vectors in which the U3 promoter was replaced with the cytomegalovirus promoter gave rise to over 50-fold-higher titers than FIV vectors containing the complete FIV 5′ long terminal repeat (LTR). Comparison of the transduction efficiencies of vectors containing different portions of the FIV Gag coding region indicates that at least a functional part of the FIV packaging signal (Ψ) is located within an area which includes the 5′ LTR and the first 350 bp of gag. Transduction efficiencies of vectors prepared without FIV vif and orf2 accessory gene expression did not differ substantially from those of vectors prepared with accessory gene expression in either dividing or nondividing cells. The requirement for FIV rev-RRE was, however, demonstrated by the inefficient production of vector particles in the absence of rev expression. Together, these results demonstrate the efficient transduction of nondividing cells in vitro by a multiply attenuated FIV vector and contribute to an understanding of the minimum requirements for efficient vector production and infectivity. In addition, we describe the ability of an FIV vector to deliver genes in vivo into hamster muscle tissue.
机译:基于猫免疫缺陷病毒(FIV)的基因传递载体的开发是基于灵长类来源的载体向人类传递基因的有吸引力的替代方法。为了研究通过基于FIV的载体颗粒有效转导分裂细胞和非分裂细胞的要求,产生了一系列包装和载体构建体,其病毒基因表达被最小化,并从中删除了不必要的顺式作用序列。在293T细胞中产生的假型载体颗粒用于转导各种靶细胞,包括接触抑制的人皮肤成纤维细胞和生长受阻的HT1080细胞。 U3启动子被巨细胞病毒启动子替代的FIV载体的滴度比包含完整FIV 5'长末端重复序列(LTR)的FIV载体高50倍以上。包含FIV Gag编码区的不同部分的载体的转导效率的比较表明,FIV包装信号的至少一个功能部分(1/5)位于包括5'LTR和gag的前350 bp的区域内。在分裂或非分裂细胞中,没有FIV vif和orf2辅助基因表达的载体的转导效率与具有辅助基因表达的载体的转导效率没有实质性差异。但是,在没有rev表达的情况下,载体颗粒的生产效率低下,证明了对FIV rev-RRE的需求。总之,这些结果证明了通过多重减毒的FIV载体在体外有效转导非分裂细胞,有助于理解有效载体生产和感染性的最低要求。此外,我们描述了FIV载体将体内基因传递到仓鼠肌肉组织中的能力。

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