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Intercellular delivery of a herpes simplex virus VP22 fusion protein from cells infected with lentiviral vectors

机译:单纯疱疹病毒VP22融合蛋白的细胞间递送 慢病毒载体感染的细胞中的蛋白

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摘要

Effective gene therapy depends on the efficient transfer of therapeutic genes and their protein products to target cells. Lentiviral vectors appear promising for virus-mediated gene delivery and long-term expression in nondividing cells. The herpes simplex virus type 1 tegument protein VP22 has recently been shown to mediate intercellular transport of proteins, raising the possibility that it may be helpful in a setting where the global delivery of therapeutic proteins is desired. To investigate the effectiveness of lentiviral vectors to deliver genes encoding proteins fused to VP22, and to test whether the system is sufficiently potent to allow protein delivery from transduced cells in vitro and in vivo, fusion constructs of VP22 and the enhanced green fluorescent protein (EGFP) were prepared and delivered into target cells by using HIV-1-based lentiviral vectors. To follow the spread of VP22-EGFP to other cells, transduced COS-7 cells were coplated with a number of different cell types, including brain choroid plexus cells, human endothelial cells, H9 cells, and HeLa cells. We found that VP22-EGFP fusion proteins were transported from transduced cells to recipient cells and that such fusion proteins accumulated in the nucleus and in the cytoplasm of such cells. To determine the ability to deliver fusion proteins in vivo, we injected transduced H9 cells as well as the viral vector directly into the brain of mice. We present evidence that VP22-EGFP fusion proteins were transported effectively from lentivirus transduced cells in vivo. We also show that the VP22-EGFP fusion protein encoded by the lentivirus is transported between cells. Our data indicate that such fusion proteins are present in the nucleus and in the cytoplasm of neighboring cells. Therefore, lentiviral vectors may provide a potent biological system for delivering genes encoding therapeutic proteins fused to VP22.
机译:有效的基因治疗取决于治疗基因及其蛋白产物向靶细胞的有效转移。慢病毒载体有望在非分裂细胞中用于病毒介导的基因传递和长期表达。最近已显示出单纯疱疹病毒1型外皮蛋白VP22介导蛋白的细胞间转运,从而增加了在需要整体递送治疗性蛋白的环境中提供帮助的可能性。为了研究慢病毒载体传递编码与VP22融合蛋白的基因的有效性,并测试该系统是否足够有效以允许从体内和体外从转导细胞中传递蛋白,VP22和增强型绿色荧光蛋白(EGFP)的融合构建体通过使用基于HIV-1的慢病毒载体制备并递送至靶细胞。为了跟踪VP22-EGFP向其他细胞的扩散,将转导的COS-7细胞与许多不同的细胞类型相配合,包括脑脉络丛细胞,人内皮细胞,H9细胞和HeLa细胞。我们发现VP22-EGFP融合蛋白从转导的细胞转运到受体细胞,并且这种融合蛋白积累在这种细胞的细胞核和细胞质中。为了确定在体内递送融合蛋白的能力,我们将转导的H9细胞以及病毒载体直接注射到小鼠的大脑中。我们提供的证据表明,VP22-EGFP融合蛋白可从慢病毒转导的细胞体内有效转运。我们还显示,慢病毒编码的VP22-EGFP融合蛋白在细胞之间运输。我们的数据表明这种融合蛋白存在于相邻细胞的细胞核和细胞质中。因此,慢病毒载体可以提供有效的生物学系统,用于递送编码融合到VP22的治疗性蛋白质的基因。

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