首页> 美国卫生研究院文献>Journal of Virology >Cross-Packaging of Human Immunodeficiency Virus Type 1 Vector RNA by Spleen Necrosis Virus Proteins: Construction of a New Generation of Spleen Necrosis Virus-Derived Retroviral Vectors
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Cross-Packaging of Human Immunodeficiency Virus Type 1 Vector RNA by Spleen Necrosis Virus Proteins: Construction of a New Generation of Spleen Necrosis Virus-Derived Retroviral Vectors

机译:通过脾脏坏死病毒蛋白交叉包装人类免疫缺陷病毒1型载体RNA:新一代的脾脏坏死病毒衍生的逆转录病毒载体的构建

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摘要

The ability of the nonlentiviral retrovirus spleen necrosis virus (SNV) to cross-package the genomic RNA of the distantly related human immunodeficiency virus type 1 (HIV-1) and vice versa was analyzed. Such a model may allow us to further study HIV-1 replication and pathogenesis, as well as to develop safe gene therapy vectors. Our results suggest that SNV can cross-package HIV-1 genomic RNA but with lower efficiency than HIV-1 proteins. However, HIV-1-specific proteins were unable to cross-package SNV RNA. We also constructed SNV-based gag-pol chimeric variants by replacing the SNV integrase with the HIV-1 integrase, based on multiple sequence alignments and domain analyses. These analyses revealed that there are conserved domains in all retroviral integrase open reading frames (orf), despite the divergence in the primary sequences. The transcomplementation assays suggested that SNV proteins recognized one of the chimeric variants. This demonstrated that HIV-1 integrase is functional in the SNV gag-pol orf with a lower transduction efficiency, utilizing homologous (SNV) RNA, as well as the heterologous vector RNA of HIV-1. These findings suggest that homology in the conserved sequences of the integrase protein may not be fully competent in the replacement of protein(s) from one retrovirus to another, and there are likely several other factors involved in each of the steps related to replication, integration, and infection. However, further studies to dissect the gag-pol region will be critical for understanding the mechanisms involved in the cleavage of reverse transcriptase, RNase H, and integrase. These studies should provide further insight into the design and development of novel molecular approaches to block HIV-1 replication and to construct a new generation of SNV-based vectors.
机译:分析了非慢病毒逆转录病毒脾坏死病毒(SNV)交叉包装远距离相关的人类免疫缺陷病毒1型(HIV-1)的基因组RNA的能力,反之亦然。这种模型可以使我们进一步研究HIV-1复制和发病机理,并开发安全的基因治疗载体。我们的结果表明,SNV可以交叉包装HIV-1基因组RNA,但效率要低于HIV-1蛋白。但是,HIV-1特异性蛋白无法交叉包装SNV RNA。我们还基于多个序列比对和域分析,通过用HIV-1整合酶取代SNV整合酶,构建了基于SNV的gag-pol嵌合变异体。这些分析表明,尽管一级序列存在差异,但所有逆转录病毒整合酶开放阅读框(orf)中都有保守的结构域。转互补测定表明SNV蛋白识别嵌合变异体之一。这表明利用同源(SNV)RNA以及HIV-1的异源载体RNA,HIV-1整合酶在SNV gag-pol orf中具有较低的转导效率。这些发现表明,整合酶保守序列中的同源性可能不能完全胜任将蛋白质从一种逆转录病毒替换为另一种逆转录病毒,并且与复制,整合相关的每个步骤可能还涉及其他几个因素和感染。但是,进一步研究解剖gag-pol区域对于理解逆转录酶,RNase H和整合酶裂解的机制至关重要。这些研究应该为阻断HIV-1复制和构建新一代基于SNV的载体的新型分子方法的设计和开发提供进一步的见识。

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