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整合缺陷型慢病毒载体:姗姗来迟的成熟

Integration-deficient lentiviral vectors: a slow coming of age.

作者信息

Wanisch Klaus, Yáñez-Muñoz Rafael J

机构信息

School of Biological Sciences, Royal Holloway, University of London, Egham, Surrey, UK.

出版信息

Mol Ther. 2009 Aug;17(8):1316-32. doi: 10.1038/mt.2009.122. Epub 2009 Jun 2.

Abstract

Lentiviral vectors are very efficient at transducing dividing and quiescent cells, which makes them highly useful tools for genetic analysis and gene therapy. Traditionally this efficiency was considered dependent on provirus integration in the host cell genome; however, recent results have challenged this view. So called integration-deficient lentiviral vectors (IDLVs) can be produced through the use of integrase mutations that specifically prevent proviral integration, resulting in the generation of increased levels of circular vector episomes in transduced cells. These lentiviral episomes lack replication signals and are gradually lost by dilution in dividing cells, but are stable in quiescent cells. Compared to integrating lentivectors, IDLVs have a greatly reduced risk of causing insertional mutagenesis and a lower risk of generating replication-competent recombinants (RCRs). IDLVs can mediate transient gene expression in proliferating cells, stable expression in nondividing cells in vitro and in vivo, specific immune responses, RNA interference, homologous recombination (gene repair, knock-in, and knock-out), site-specific recombination, and transposition. IDLVs can be converted into replicating episomes, suggesting that if a clinically applicable system can be developed they would also become highly appropriate for stable transduction of proliferating tissues in therapeutic applications.

摘要

慢病毒载体在转导分裂细胞和静止细胞方面非常高效,这使其成为遗传分析和基因治疗的极为有用的工具。传统上,这种效率被认为依赖于原病毒整合到宿主细胞基因组中;然而,最近的结果对这一观点提出了挑战。所谓的整合缺陷型慢病毒载体(IDLVs)可以通过使用特异性阻止原病毒整合的整合酶突变来产生,从而在转导细胞中导致环状载体附加体水平的增加。这些慢病毒附加体缺乏复制信号,在分裂细胞中会因稀释而逐渐丢失,但在静止细胞中是稳定的。与整合型慢病毒载体相比,IDLVs导致插入诱变的风险大大降低,产生复制能力重组体(RCRs)的风险也较低。IDLVs可以在增殖细胞中介导瞬时基因表达,在体外和体内的非分裂细胞中实现稳定表达,引发特异性免疫反应、RNA干扰、同源重组(基因修复、敲入和敲除)、位点特异性重组以及转座。IDLVs可以转化为复制性附加体,这表明如果能够开发出一种临床适用的系统,它们在治疗应用中对于增殖组织的稳定转导也将变得非常合适。

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