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Significantly improved rescue of rabies virus from cDNA plasmids

机译:从cDNA质粒显着改善狂犬病毒的拯救

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摘要

The rescue of recombinant rabies virus (RV) from cloned cDNA is an inefficient process because it relies on the de novo formation within cells of functional ribonucleoprotein (RNP) complexes from plasmid-expressed viral-like antigenome RNAs and three helper proteins. In the standard RV reverse genetics systems, bacteriophage 17 RNA polymerase drives the transcription of virus antigenome-like RNAs containing three nonviral G residues at the 5'-end and a correct 3'-end generated by the autocatalytic activity of an 85 nucleotides long hepatitis delta virus antigenomic "core" ribozyme (HDVagrz). Here, we show that employing optimized ribozyme sequences significantly improves RV rescue. Substitution of the "core" HDVagrz by a ribozyme with an enhanced cleavage activity resulted in an approximately 10-fold higher number of rescue events and faster initiation of an infectious cycle. The alternative use of a hammerhead ribozyme for the generation of an exact 5'-end similarly enhanced rescue efficiency. Notably, RV cDNA clones containing the combination of optimized 3'- and 5'-ribozymes were rescued at an at least 100-fold increase. In addition to virus rescue, reporter gene expression from transfected minigenome cDNAs was significantly enhanced by the novel ribozymes. The improved RV reverse genetics system greatly facilitates recovery of strongly attenuated viruses and vectors for biomedical applications. (C) 2011 Elsevier GmbH. All rights reserved.
机译:从克隆的cDNA挽救重组狂犬病病毒(RV)的过程效率不高,因为它依赖于从质粒表达的病毒样反基因组RNA和三种辅助蛋白中功能核糖核蛋白(RNP)复合物在细胞内的从头形成。在标准的RV反向遗传学系统中,噬菌体17 RNA聚合酶驱动病毒反基因组样RNA的转录,该RNA在5'端含有3个非病毒G残基,并由85个核苷酸长的肝炎的自催化活性产生正确的3'端三角洲病毒反基因组“核心”核酶(HDVagrz)。在这里,我们表明采用优化的核酶序列可显着改善RV抢救。具有增强的裂解活性的核酶取代“核心” HDVagrz导致挽救事件的数量增加了大约10倍,并且感染周期的启动速度更快。锤头状核酶可替代地用于产生精确的5'端,同样提高了救援效率。值得注意的是,包含优化的3'-和5'-核酶组合的RV cDNA克隆以至少100倍的增加被拯救。除了挽救病毒外,新型核酶还显着增强了转染的微型基因组cDNA报告基因的表达。改良的RV反向遗传学系统极大地促进了用于生物医学应用的强减毒病毒和载体的回收。 (C)2011 Elsevier GmbH。版权所有。

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