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包装猿猴免疫缺陷病毒衍生基因组的异源人类免疫缺陷病毒1型慢病毒载体在树突状细胞中表现出特定的进入后转导缺陷。

Heterologous human immunodeficiency virus type 1 lentiviral vectors packaging a simian immunodeficiency virus-derived genome display a specific postentry transduction defect in dendritic cells.

作者信息

Goujon Caroline, Jarrosson-Wuilleme Loraine, Bernaud Jeanine, Rigal Dominique, Darlix Jean-Luc, Cimarelli Andrea

机构信息

INSERM U412, Ecole Normale Supérieure de Lyon. Etablissement Français du Sang, Lyon, France.

出版信息

J Virol. 2003 Sep;77(17):9295-304. doi: 10.1128/jvi.77.17.9295-9304.2003.

Abstract

Heterologous lentiviral vectors (LVs) represent a way to address safety concerns in the field of gene therapy by decreasing the possibility of genetic recombination between vector and packaging constructs and the generation of replication-competent viruses. Using described LVs based on human immunodeficiency virus type 1 (HIV-1) and simian immunodeficiency virus MAC251 (SIV(MAC251)), we asked whether heterologous virion particles in which trans-acting factors belonged to HIV-1 and cis elements belonged to SIV(MAC251) (HIV-siv) would behave as parental homologous vectors in all cell types. To our surprise, we found that although the heterologous HIV-siv vector was as infectious as its homologous counterpart in most human cells, it was defective in the transduction of dendritic cells (DCs) and, to a lesser extent, macrophages. In DCs, the main postentry defect was observed in the formation of two-long-terminal-repeat circles, despite the fact that full-length proviral DNA was being synthesized and was associated with the nucleus. Taken together, our data suggest that heterologous HIV-siv vectors display a cell-dependent infectivity defect, most probably at a post-nuclear entry migration step. As homologous HIV and SIV vectors do transduce DCs, we believe that these results underscore the importance of a conserved interaction between cis elements and trans-acting viral factors that is lost or suboptimal in heterologous vectors and essential only in the transduction of certain cell types. For gene therapy purposes, these findings indicate that the cellular tropism of LVs can be modulated not only through the use of distinct envelope proteins or tissue-specific promoters but also through the specific combinatorial use of packaging and transfer vector constructs.

摘要

异源慢病毒载体(LVs)是一种解决基因治疗领域安全问题的方法,它可降低载体与包装构建体之间发生基因重组以及产生具有复制能力病毒的可能性。利用基于1型人类免疫缺陷病毒(HIV-1)和猿猴免疫缺陷病毒MAC251(SIV(MAC251))构建的所述LVs,我们探究了反式作用因子属于HIV-1且顺式元件属于SIV(MAC251)的异源病毒粒子(HIV-siv)在所有细胞类型中是否会表现得与亲本同源载体相同。令我们惊讶的是,我们发现尽管异源HIV-siv载体在大多数人类细胞中的感染性与其同源载体相当,但它在树突状细胞(DCs)的转导中存在缺陷,在巨噬细胞中的缺陷程度较小。在DCs中,尽管全长前病毒DNA正在合成并与细胞核相关联,但在形成双长末端重复环时观察到主要的进入后缺陷。综合来看,我们的数据表明异源HIV-siv载体表现出细胞依赖性感染缺陷,最有可能发生在核进入后的迁移步骤。由于同源HIV和SIV载体确实能转导DCs,我们认为这些结果强调了顺式元件与反式作用病毒因子之间保守相互作用的重要性,这种相互作用在异源载体中丧失或不理想,且仅在某些细胞类型的转导中至关重要。对于基因治疗而言,这些发现表明LVs的细胞嗜性不仅可以通过使用不同的包膜蛋白或组织特异性启动子来调节,还可以通过包装和转移载体构建体的特定组合使用来调节。

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