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含有口蹄疫病毒2A序列的重组腺相关病毒载体在培养细胞和大鼠黑质神经元中实现高效双顺反子基因表达。

Recombinant AAV vectors containing the foot and mouth disease virus 2A sequence confer efficient bicistronic gene expression in cultured cells and rat substantia nigra neurons.

作者信息

Furler S, Paterna J C, Weibel M, Büeler H

机构信息

Institut für Molekularbiologie, Universität Zürich, Winterthurerstrasse 190, CH-8057 Zürich, Switzerland.

出版信息

Gene Ther. 2001 Jun;8(11):864-73. doi: 10.1038/sj.gt.3301469.

Abstract

Recombinant adeno-associated viruses (rAAVs) are promising vectors for gene therapy since they efficiently and stably transduce a variety of tissues of immunocompetent animals. The major disadvantage of rAAVs is their limited capacity to package foreign DNA (< or =5 kb). Often, co-expression of two or more genes from a single viral vector is desirable to achieve maximal therapeutic efficacy or to track transduced cells in vivo by suitable reporter genes. The internal ribosome entry site (IRES) sequence of encephalomyocarditis virus has been widely used to construct bicistronic viral vectors. However, the IRES is rather long and IRES-mediated translation can be relatively inefficient when compared with cap-dependent translation. As an alternative to the IRES for in vivo gene expression, we studied the 16 amino-acid long 2A peptide of foot and mouth disease virus (FMDV). The 2A peptide mediates the primary cis-'cleavage' of the FMDV polyprotein in a cascade of processing events that ultimately generate the mature FMDV proteins. We have generated several different rAAV genomes in which two coding regions are fused in-frame via the FMDV 2A sequence. We show that FMDV 2A efficiently mediates the generation of the expected cleavage products from the artificial fusion proteins in cells. Furthermore, we find that both EGFP and alpha- synuclein are expressed at substantially higher levels from 2A vectors than from the corresponding IRES-based vectors, while SOD-1 is expressed at comparable or slightly higher levels. Finally, we demonstrate for the first time, that the 2A sequence results in effective bicistronic gene expression in vivo after injection of 2A-dependent rAAVs into the rat substantia nigra. We conclude that 2A-containing rAAVs may represent an attractive alternative to IRES-dependent vectors for ex vivo and in vivo gene expression and gene therapy.

摘要

重组腺相关病毒(rAAV)是基因治疗中很有前景的载体,因为它们能有效且稳定地转导免疫活性动物的多种组织。rAAV的主要缺点是其包装外源DNA的能力有限(≤5 kb)。通常,为了实现最大治疗效果或通过合适的报告基因在体内追踪转导细胞,需要从单个病毒载体共表达两个或更多基因。脑心肌炎病毒的内部核糖体进入位点(IRES)序列已被广泛用于构建双顺反子病毒载体。然而,IRES相当长,与帽依赖性翻译相比,IRES介导的翻译可能效率相对较低。作为体内基因表达中IRES的替代方案,我们研究了口蹄疫病毒(FMDV)16个氨基酸长的2A肽。2A肽在一系列加工事件中介导FMDV多聚蛋白的初级顺式“切割”,最终产生成熟的FMDV蛋白。我们已经构建了几种不同的rAAV基因组,其中两个编码区通过FMDV 2A序列读框融合。我们表明,FMDV 2A能有效地在细胞中从人工融合蛋白产生预期的切割产物。此外,我们发现,与相应的基于IRES的载体相比,EGFP和α-突触核蛋白从2A载体的表达水平都显著更高,而SOD-1的表达水平相当或略高。最后,我们首次证明,在将依赖2A的rAAV注射到大鼠黑质后,2A序列能在体内实现有效的双顺反子基因表达。我们得出结论,含2A的rAAV可能是依赖IRES的载体用于体外和体内基因表达及基因治疗的有吸引力的替代方案。

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