首页> 美国卫生研究院文献>Journal of Virology >Note: A Lentivirus Packaging System Based on Alternative RNA Transport Mechanisms To Express Helper and Gene Transfer Vector RNAs and Its Use To Study the Requirement of Accessory Proteins for Particle Formation and Gene Delivery
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Note: A Lentivirus Packaging System Based on Alternative RNA Transport Mechanisms To Express Helper and Gene Transfer Vector RNAs and Its Use To Study the Requirement of Accessory Proteins for Particle Formation and Gene Delivery

机译:注意:一种慢病毒包装系统该系统基于替代RNA传输机制来表达辅助基因和基因转移载体RNA并且可用于研究辅助蛋白质对颗粒形成和基因传递的需求

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摘要

A lentivirus-based packaging system was designed to reduce the chance of recombination between helper and gene transfer vector sequences by using the constitutive transport element (CTE) derived from Mason-Pfizer monkey virus for expression of the viral proteins and the Rev-Rev response element (RRE) combination for expression of the gene transfer vector. Using this approach, we evaluated a series of human immunodeficiency virus type 1 packaging constructs that express one or more accessory proteins (Vif, Vpr, and Vpu), in addition to the Gag and Pol proteins, for particle formation and virus stock production for gene transfer. Constructs that also express Vpr or both Vpr and Vpu produced more particles, as measured by a p24 assay, than did plasmids that did not contain these sequences. Transactivation experiments showed that the packaging plasmids that encode Vpr or both Vpr and Vpu also expressed a functional single-exon Tat protein. For these constructs, high-titer virus stocks could be prepared in the absence of a cotransfected Tat-expressing plasmid. Amphotropic-envelope-pseudotyped virus stocks prepared with all of the packaging constructs, irrespective of whether any of the accessory proteins were coexpressed, were equally efficient in transducing growth-arrested HeLa cells. The combination/mixed packaging system was compared to systems that were based on either the CTE alone or Rev and RRE for expression of both the packaging plasmid as well as the gene transfer vector. The combination/mixed packaging system was comparable to the other systems for production of virus stocks, suggesting that this design may prove to be safer for the eventual deployment of lentivirus vectors for therapeutic purposes.
机译:设计了一种基于慢病毒的包装系统,以通过使用衍生自梅森-辉瑞猴病毒的组成型转运元件(CTE)表达病毒蛋白和Rev-Rev反应元件来减少辅助基因和基因转移载体序列之间重组的机会(RRE)组合以表达基因转移载体。使用这种方法,我们评估了一系列人类免疫缺陷病毒1型包装构建体,这些构建体除了Gag和Pol蛋白外还表达一种或多种辅助蛋白(Vif,Vpr和Vpu),以形成颗粒和基因的病毒原种传递。通过p24分析测得,还表达Vpr或同时表达Vpr或Vpr和Vpu的构建体比不包含这些序列的质粒产生更多的颗粒。反式激活实验表明,编码Vpr或Vpr和Vpu的包装质粒也表达了功能性单外显子Tat蛋白。对于这些构建体,可以在不存在共转染的表达Tat的质粒的情况下制备高滴度的病毒原种。用所有包装构建物制备的两性包膜假型病毒原种,无论是否共表达了任何辅助蛋白,在转导生长停滞的HeLa细胞方面都同样有效。将组合/混合包装系统与仅基于CTE或基于Rev和RRE的系统进行比较,以表达包装质粒以及基因转移载体。组合/混合包装系统可与其他生产病毒原种的系统相媲美,这表明该设计对于最终部署用于治疗目的的慢病毒载体可能更为安全。

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