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Unique Biologic Properties of Recombinant AAV1 Transduction in Polarized Human Airway Epithelia

机译:极化人气道上皮细胞中重组AAV1转导的独特生物学特性

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摘要

The choice of adeno-associated virus serotypes for clinical applications is influenced by the animal model and model system used to evaluate various serotypes. In the present study, we sought to compare the biologic properties of rAAV2/1, rAAV2/2, and rAAV2/5 transduction in polarized human airway epithelia using viruses purified by a newly developed common column chromatography method. Results demonstrated that apical transduction of human airway epithelia with rAAV2/1 was 100-fold more efficient than rAAV2/2 and rAAV2/5. This transduction profile in human airway epithelia (rAAV2/1 ≫ rAAV2/2 = rAAV2/5) was significantly different from that seen following nasal administration of these vectors to mouse lung (rAAV2/5 > rAAV2/1 ≫ rAAV2/2), emphasizing differences in transduction of these serotypes between these two species. In stark contrast to rAAV2/2 and rAAV2/5, rAAV2/1 transduced both the apical and basolateral membrane of human airway epithelia with similar efficiency. However, the overall level of transduction across serotypes did not correlate with vector internalization. We hypothesized that differences in post-entry processing of these serotypes might influence the efficiency of apical transduction. To this end, we tested the effectiveness of proteasome inhibitors to augment nuclear translocation and gene expression from the three serotypes. Augmentation of rAAV2/1 apical transduction of human polarized airway epithelia was 10-fold lower than that for rAAV2/2 and rAAV2/5. Cellular fractionation studies demonstrated that proteasome inhibitors more significantly enhanced rAAV2/2 and rAAV2/5 translocation to the nucleus than rAAV2/1. These results demonstrate that AAV1 transduction biology in human airway epithelia differs from that of AAV2 and AAV5 by virtue of altered ubiquitin/proteasome sensitivities that influence nuclear translocation.
机译:用于临床应用的腺相关病毒血清型的选择受用于评估各种血清型的动物模型和模型系统的影响。在本研究中,我们试图比较使用新开发的通用柱色谱法纯化的病毒在极化的人呼吸道上皮细胞中的rAAV2 / 1,rAAV2 / 2和rAAV2 / 5转导的生物学特性。结果表明,用rAAV2 / 1进行人气道上皮的顶尖传导比rAAV2 / 2和rAAV2 / 5的效率高100倍。在人气道上皮中的这种转导模式(rAAV2 / 1/1 rAAV2 / 2 = rAAV2 / 5)与将这些载体经鼻给予小鼠肺后所见的转导谱(rAAV2 / 5> rAAV2 / 1≫ rAAV2 / 2)显着不同。这两个物种之间这些血清型的转导差异。与rAAV2 / 2和rAAV2 / 5形成鲜明对比的是,rAAV2 / 1能够以相似的效率转导人气道上皮的顶膜和基底外侧膜。但是,跨血清型的总转导水平与载体内在化没有关系。我们假设这些血清型的进入后加工过程中的差异可能会影响根尖转导的效率。为此,我们测试了蛋白酶体抑制剂增强三种血清型的核转运和基因表达的有效性。人极化气道上皮的rAAV2 / 1顶端转导的增强比rAAV2 / 2和rAAV2 / 5的低10倍。细胞分级研究表明,蛋白酶体抑制剂比rAAV2 / 1更明显地增强了rAAV2 / 2和rAAV2 / 5向核的转运。这些结果表明,人气道上皮中的AAV1转导生物学与AAV2和AAV5的生物学不同,是因为泛素/蛋白酶体敏感性的改变会影响核易位。

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