首页> 外文期刊>Retrovirology >Identification of unique reciprocal and non reciprocal cross packaging relationships between HIV-1, HIV-2 and SIV reveals an efficient SIV/HIV-2 lentiviral vector system with highly favourable features for in vivo testing and clinical usage
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Identification of unique reciprocal and non reciprocal cross packaging relationships between HIV-1, HIV-2 and SIV reveals an efficient SIV/HIV-2 lentiviral vector system with highly favourable features for in vivo testing and clinical usage

机译:HIV-1,HIV-2和SIV之间独特的相互和非相互交叉包装关系的鉴定揭示了一种有效的SIV / HIV-2慢病毒载体系统,具有体内测试和临床使用的高度有利功能

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Background Lentiviral vectors have shown immense promise as vehicles for gene delivery to non-dividing cells particularly to cells of the central nervous system (CNS). Improvements in the biosafety of viral vectors are paramount as lentiviral vectors move into human clinical trials. This study investigates the packaging relationship between gene transfer (vector) and Gag-Pol expression constructs of HIV-1, HIV-2 and SIV. Cross-packaged vectors expressing GFP were assessed for RNA packaging, viral vector titre and their ability to transduce rat primary glial cell cultures and human neural stem cells. Results HIV-1 Gag-Pol demonstrated the ability to cross package both HIV-2 and SIV gene transfer vectors. However both HIV-2 and SIV Gag-Pol showed a reduced ability to package HIV-1 vector RNA with no significant gene transfer to target cells. An unexpected packaging relationship was found to exist between HIV-2 and SIV with SIV Gag-Pol able to package HIV-2 vector RNA and transduce dividing SV2T cells and CNS cell cultures with an efficiency equivalent to the homologous HIV-1 vector however HIV-2 was unable to deliver SIV based vectors. Conclusion This new non-reciprocal cross packaging relationship between SIV and HIV-2 provides a novel way of significantly increasing bio-safety with a reduced sequence homology between the HIV-2 gene transfer vector and the SIV Gag-Pol construct thus ensuring that vector RNA packaging is unidirectional.
机译:背景技术慢病毒载体作为将基因递送至非分裂细胞特别是中枢神经系统(CNS)细胞的载体已显示出巨大的前景。随着慢病毒载体进入人类临床试验,提高病毒载体生物安全性至关重要。这项研究调查了基因转移(载体)与HIV-1,HIV-2和SIV的Gag-Pol表达构建体之间的包装关系。评估了表达GFP的交叉包装载体的RNA包装,病毒载体滴度及其转导大鼠原代神经胶质细胞培养物和人类神经干细胞的能力。结果HIV-1 Gag-Pol具有交叉包装HIV-2和SIV基因转移载体的能力。但是,HIV-2和SIV Gag-Pol都显示出包装HIV-1载体RNA的能力降低,而没有明显的基因转移至靶细胞。发现HIV-2和SIV之间存在意想不到的包装关系,而SIV Gag-Pol可以包装HIV-2载体RNA并转导分裂的SV2T细胞和CNS细胞培养物,其效率等同于同源HIV-1载体,但是HIV- 2无法传递基于SIV的载体。结论SIV与HIV-2之间的这种新的不可逆交叉包装关系提供了一种新的途径,可以显着提高生物安全性,同时降低HIV-2基因转移载体与SIV Gag-Pol构建体之间的序列同源性,从而确保载体RNA包装是单向的。

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