Alphavirus vectors: from protein production to gene therapy

C. Smerdou, P. Liljeström
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引用次数: 9

Abstract

Alphaviruses are enveloped viruses containing a single positive strand RNA molecule as genome. Several vectors derived from alphaviruses have been developed, which include Sindbis virus (SIN), Semliki Forest virus (SFV), and Venezuelan Equine Encephalitis virus (VEE). Alphavirus self-replicating RNA containing heterologous genes can be synthesized in vitro from plasmids having the recombinant alphavirus replicon sequences under the control of a prokaryotic promoter, such as SP6 or T7. High level expression of the heterologous proteins/RNA is obtained in cells transfected with this RNA. Although the system can be used for gene delivery directly as naked RNA, several packaging systems have been developed which allow the encapsidation of the alphaviral recombinant RNA into suicidal viral particles, increasing the efficiency of delivery of the recombinant genome into cells. A more recent variant of the system is based on a DNA/RNA layered alphaviral vector in which the recombinant replicon is transcribed from an RNA polymerase-II promoter, allowing direct delivery of DNA into cells. Alphavirus vectors have been used to express a great number of proteins with many different purposes, including protein production and characterization, functional studies, vaccination, and gene therapy. Both the recombinant alphavirus particles and the alphavirus nucleic acid vectors have shown to be able to induce protective immune responses in animal models. The possible application of these vectors in gene therapy faces, however, two limitations, which are the lack of specific targeting and the transient nature of the vector, due to the induction of apoptosis by the alphavirus replicon. Several strategies have been recently described to improve the targeting of alphavirus vectors and to develop noncytopathic vectors with potential use in gene therapy.
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甲病毒载体:从蛋白质生产到基因治疗
甲病毒是一种包膜病毒,含有单个正链RNA分子作为基因组。从甲病毒衍生的几种媒介已被开发出来,包括辛德比斯病毒(SIN)、塞姆利基森林病毒(SFV)和委内瑞拉马脑炎病毒(VEE)。在原核启动子(如SP6或T7)的控制下,含有异源基因的甲病毒自复制RNA可以在体外由具有重组甲病毒复制子序列的质粒合成。在转染该RNA的细胞中获得了高水平的异种蛋白/RNA表达。虽然该系统可以直接作为裸RNA用于基因传递,但已经开发了几种包装系统,可以将α病毒重组RNA包裹成自杀病毒颗粒,提高重组基因组进入细胞的效率。该系统的最新变体是基于DNA/RNA分层α病毒载体,其中重组复制子从RNA聚合酶ii启动子转录,允许将DNA直接递送到细胞中。甲病毒载体已被用于表达具有许多不同目的的大量蛋白质,包括蛋白质生产和表征、功能研究、疫苗接种和基因治疗。重组甲病毒颗粒和甲病毒核酸载体在动物模型中均表现出诱导保护性免疫反应的能力。然而,这些载体在基因治疗中的可能应用面临两个限制,即缺乏特异性靶向性和载体的短暂性,由于α病毒复制子诱导细胞凋亡。最近已经描述了几种策略来提高甲病毒载体的靶向性,并开发具有基因治疗潜在用途的非细胞病变载体。
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