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小分子控制系统可高效假型化原型泡沫病毒载体。

A small-molecule-controlled system for efficient pseudotyping of prototype foamy virus vectors.

机构信息

Institut für Virologie, Medizinische Fakultät "Carl Gustav Carus", Technische Universität Dresden, Dresden, Germany.

出版信息

Mol Ther. 2012 Jun;20(6):1167-76. doi: 10.1038/mt.2012.61. Epub 2012 Apr 3.

Abstract

Foamy virus (FV) vector systems have recently demonstrated their power as efficient gene transfer tools for different target tissues. Unfortunately, FVs cannot be naturally pseudotyped by heterologous viral glycoproteins due to an unusual particle morphogenesis involving a FV Env-dependent particle release process. Therefore, current FV vector systems are constrained to the broad host cell range provided by the cognate viral glycoprotein. We evaluated different approaches for pseudotyping of FV vectors, in which the specific FV Gag-Env interaction, essential for particle egress, is substituted by a small-molecule controlled heterodimerization (HD) system. In one system developed, one HD-domain (HDD) is fused to a membrane-targeting domain (MTD), such as the human immunodeficiency virus (HIV) Gag matrix (MA) subunit, with a second fused to the FV capsid protein. Coexpression of both components with different heterologous viral glycoproteins allowed an efficient, dimerizer-dependent pseudotyping of FV capsids. With this system FV vesicular stomatitis virus glycoprotein (VSV-G) pseudotype titers greater than 1 × 10(6) IU/ml were obtained, at levels comparable to authentic FV vector particles. As a proof-of-principle we demonstrate that Pac2 cells, naturally resistant to FV vectors, become permissive to FV VSV-G pseudotypes. Similar to other retroviral vectors, this FV pseudotyping system now enables adaptation of cell-specific targeting approaches for FVs.

摘要

泡沫病毒 (FV) 载体系统最近已被证明是一种高效的基因转移工具,可用于不同的靶组织。遗憾的是,由于涉及 FV Env 依赖性颗粒释放过程的异常颗粒形态发生,FV 不能被异源病毒糖蛋白自然假型化。因此,当前的 FV 载体系统仅限于由同源病毒糖蛋白提供的广泛宿主细胞范围。我们评估了用于 FV 载体假型化的不同方法,其中特定的 FV Gag-Env 相互作用,对于颗粒逸出是必不可少的,被小分子控制的异二聚化 (HD) 系统取代。在开发的一个系统中,一个 HD 结构域 (HDD) 与膜靶向结构域 (MTD) 融合,例如人类免疫缺陷病毒 (HIV) Gag 基质 (MA) 亚基,第二个与 FV 衣壳蛋白融合。用不同的异源病毒糖蛋白共表达这两种成分,允许 FV 衣壳的有效、二聚化依赖性假型化。使用该系统,我们获得了超过 1×10^6 IU/ml 的 FV 水疱性口炎病毒糖蛋白 (VSV-G) 假型滴度,与真实的 FV 载体颗粒相当。作为原理验证,我们证明天然对 FV 载体具有抗性的 Pac2 细胞对 FV VSV-G 假型变得允许。与其他逆转录病毒载体一样,这种 FV 假型化系统现在使 FV 适应细胞特异性靶向方法成为可能。

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