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腺相关病毒及腺相关病毒载体的感染性进入途径

Infectious entry pathway of adeno-associated virus and adeno-associated virus vectors.

作者信息

Bartlett J S, Wilcher R, Samulski R J

机构信息

Gene Therapy Center, The University of North Carolina at Chapel Hill, Chapel Hill, North Carolina, USA.

出版信息

J Virol. 2000 Mar;74(6):2777-85. doi: 10.1128/jvi.74.6.2777-2785.2000.

Abstract

We have investigated the infectious entry pathway of adeno-associated virus (AAV) and recombinant AAV vectors by assessing AAV-mediated gene transfer and by covalently conjugating fluorophores to AAV and monitoring entry by fluorescence microscopy. We examined AAV entry in HeLa cells and in HeLa cell lines which inducibly expressed a dominant interfering mutant of dynamin. The data demonstrate that AAV internalizes rapidly by standard receptor-mediated endocytosis from clathrin-coated pits (half-time <10 min). The lysosomotropic agents ammonium chloride and bafilomycin A(1) prevent AAV-mediated gene transfer when present during the first 30 min after the onset of endocytosis, indicating that AAV escapes from early endosomes yet requires an acidic environment for penetration into the cytosol. Following release from the endosome, AAV rapidly moves to the cell nucleus and accumulates perinuclearly beginning within 30 min after the onset of endocytosis. We present data indicating that escape of AAV from the endosome and trafficking of viral particles to the nucleus are unaffected by the presence of adenovirus, the primary helper virus for a productive AAV infection. Within 2 h, viral particles could be detected within the cell nucleus, suggesting that AAV enters the nucleus prior to uncoating. Interestingly, the majority of the intracellular virus particles remain in a stable perinuclear compartment even though gene expression from nuclear AAV genomes can be detected. This suggests that the process of nuclear entry is rate limiting or that AAV entry involves multiple pathways. Nevertheless, these data establish specific points in the AAV infectious entry process and have allowed the generation of a model for future expansion to specific cell types and AAV vector analysis in vivo.

摘要

我们通过评估腺相关病毒(AAV)介导的基因转移,以及将荧光团共价偶联到AAV上并通过荧光显微镜监测其进入过程,来研究腺相关病毒(AAV)和重组AAV载体的感染性进入途径。我们检测了AAV在HeLa细胞以及可诱导表达发动蛋白显性干扰突变体的HeLa细胞系中的进入情况。数据表明,AAV通过网格蛋白包被小窝经标准受体介导的内吞作用快速内化(半衰期<10分钟)。溶酶体促渗剂氯化铵和巴弗洛霉素A1在内吞作用开始后的最初30分钟内存在时,可阻止AAV介导的基因转移,这表明AAV从早期内体中逃逸,但进入细胞质需要酸性环境。从内体释放后,AAV迅速移动到细胞核,并在内吞作用开始后30分钟内开始在核周积累。我们提供的数据表明,AAV从内体的逃逸以及病毒颗粒向细胞核的运输不受腺病毒(AAV有效感染的主要辅助病毒)存在的影响。在2小时内,可在细胞核内检测到病毒颗粒,这表明AAV在脱壳之前进入细胞核。有趣的是,尽管可以检测到来自细胞核AAV基因组的基因表达,但大多数细胞内病毒颗粒仍保留在稳定的核周区室中。这表明核进入过程是限速步骤,或者AAV进入涉及多种途径。尽管如此,这些数据确定了AAV感染性进入过程中的特定点,并为将来扩展到特定细胞类型和体内AAV载体分析建立了模型。

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