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Novel Chimeric Gene Therapy Vectors Based on Adeno-Associated Virus and Four Different Mammalian Bocaviruses

机译:基于腺相关病毒和四种不同的哺乳动物博卡病毒的新型嵌合基因治疗载体

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摘要

Parvoviruses are highly attractive templates for the engineering of safe, efficient, and specific gene therapy vectors, as best exemplified by adeno-associated virus (AAV). Another candidate that currently garners increasing attention is human bocavirus 1 (HBoV1). Notably, HBoV1 capsids can cross-package recombinant (r)AAV2 genomes, yielding rAAV2/HBoV1 chimeras that specifically transduce polarized human airway epithelia (pHAEs). Here, we largely expanded the repertoire of rAAV/BoV chimeras, by assembling packaging plasmids encoding the capsid genes of four additional primate bocaviruses, HBoV2–4 and GBoV (Gorilla BoV). Capsid protein expression and efficient rAAV cross-packaging were validated by immunoblotting and qPCR, respectively. Interestingly, not only HBoV1 but also HBoV4 and GBoV transduced pHAEs as well as primary human lung organoids. Flow cytometry analysis of pHAEs revealed distinct cellular specificities between the BoV isolates, with HBoV1 targeting ciliated, club, and KRT5+ basal cells, whereas HBoV4 showed a preference for KRT5+ basal cells. Surprisingly, primary human hepatocytes, skeletal muscle cells, and T cells were also highly amenable to rAAV/BoV transduction. Finally, we adapted our pipeline for AAV capsid gene shuffling to all five BoV isolates. Collectively, our chimeric rAAV/BoV vectors and bocaviral capsid library represent valuable new resources to dissect BoV biology and to breed unique gene therapy vectors.
机译:细小病毒是用于工程设计安全,高效和特异性基因治疗载体的极具吸引力的模板,如腺相关病毒(AAV)最好地体现了这一点。目前引起越来越多关注的另一种候选药物是人类博卡病毒1(HBoV1)。值得注意的是,HBoV1衣壳可以交叉包装重组(r)AAV2基因组,产生rAAV2 / HBoV1嵌合体,可特异性转导极化的人气道上皮(pHAEs)。在这里,我们通过组装包装质粒来扩展rAAV / BoV嵌合体库,该包装质粒编码四种其他灵长类博卡病毒HBoV2-4和GBoV(大猩猩BoV)的衣壳基因。衣壳蛋白的表达和有效的rAAV交叉包装分别通过免疫印迹和qPCR验证。有趣的是,不仅是HBoV1,而且还有HBoV4和GBoV转导的pHAE以及主要的人肺类器官。 pHAEs的流式细胞仪分析显示,BoV分离株之间有明显的细胞特异性,其中HBoV1靶向纤毛,俱乐部和KRT5 +基础细胞,而HBoV4显示出对KRT5 +基础细胞的偏爱。令人惊讶的是,原代人肝细胞,骨骼肌细胞和T细胞也非常适合rAAV / BoV转导。最后,我们针对所有五个BoV分离株调整了针对AAV衣壳基因改组的管道。总的来说,我们的嵌合rAAV / BoV载体和Bocaviral衣壳文库代表了宝贵的新资源,可用于剖析BoV生物学和繁殖独特的基因治疗载体。

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