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Kunjin virus replicons: an RNA-based, non-cytopathic viral vector system for protein production, vaccine and gene therapy applications

机译:Kunjin病毒复制子:一种基于RNA的非细胞病毒载体系统,用于蛋白质生产,疫苗和基因治疗应用

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摘要

The application of viral vectors for gene expression and delivery is rapidly evolving, with several entering clinical trials. However, a number of issues, including safety, gene expression levels, cell selectivity and antivector immunity, are driving the search for new vector systems. A number of replicon-based vectors derived from positive-strand RNA viruses have recently been developed, and this paper reviews the current knowledge on the first flavivirus replicon system, which is based on the Australian flavivirus Kunjin NUN). Like most replicon systems, KUN replicons can be delivered as DNA, RNA or virus-like particles, they replicate their RNA in the cytoplasm and direct prolonged high-level gene expression. However, unlike most alphavirus replicon systems, KUN replicons are non-cytopathic, with transfected cells able to divide, allowing the establishment of cell lines stably expressing replicon RNA and heterologous genes. As vaccine vectors KUN replicons can induce potent, long-lived, protective, immunogen-specific CD8(+) T cell immunity, a feature potentially related to extended production of antigen and double-stranded RNA-induced \u27danger signals\u27. The identification of KUN replicon mutants that induce increased levels of IFN-alpha/beta has also spawned investigation of KUN replicons for use in cancer gene therapy. The unique characteristics of KUN replicons may thus make them suitable for specific protein production, vaccine and gene therapy applications.
机译:病毒载体在基因表达和传递中的应用正在迅速发展,已有数项进入临床试验。然而,许多问题,包括安全性,基因表达水平,细胞选择性和抗载体免疫性,正在推动寻找新的载体系统。最近已经开发了许多从正链RNA病毒衍生的基于复制子的载体,本文综述了关于第一个黄病毒复制子系统的当前知识,该系统基于澳大利亚的黄病毒昆昆NUN。像大多数复制子系统一样,KUN复制子可以以DNA,RNA或病毒样颗粒的形式提供,它们在细胞质中复制RNA,并指导长期的高水平基因表达。但是,与大多数alphavirus复制子系统不同,KUN复制子是非细胞病变的,转染的细胞能够分裂,从而可以建立稳定表达复制子RNA和异源基因的细胞系。作为疫苗载体,KUN复制子可以诱导有效的,长寿的,保护性的,免疫原性的CD8(+)T细胞免疫,该功能可能与抗原的产生延长和双链RNA诱导的危险信号有关。诱导IFN-α/β水平升高的KUN复制子突变体的鉴定也催生了用于癌症基因治疗的KUN复制子的研究。因此,KUN复制子的独特特性使其适合于特定的蛋白质生产,疫苗和基因治疗应用。

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