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A Novel Gene Expression Control System and Its Use in Stable, High-Titer 293 Cell-Based Adeno-Associated Virus Packaging Cell Lines

机译:新型基因表达控制系统及其在稳定,基于滴度高的293细胞的腺相关病毒包装细胞系中的应用

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摘要

Previous attempts to establish 293cell-based stable and high-titer adeno-associated virus (AAV) packaging cell lines were unsuccessful, primarily due to adenovirus E1-activated Rep gene expression, which exerts cytostatic and cytotoxic effects on the host cells. Control of the two large AAV Rep proteins (Rep78/68) was insufficient to eliminate the adverse effects, because of the leaky expression of the two small Rep proteins (Rep52/40). However, it was unsuccessful to control Rep52/40 gene expression since its promoter is located within the coding sequence of Rep78/68. To tightly regulate all four Rep proteins by using their own promoters, we have developed a novel gene control paradigm termed “dual splicing switch,” which disrupts all four Rep genes by inserting into their shared coding region an intron that harbors transcription termination sequences flanked the LoxP sites. As a result, the structure and activities of the Rep gene promoters, both p5 and p19, are not affected; however, all of the Rep transcripts are prematurely terminated and the genes were inactivated. Removal of the terminator by Cre protein reactivates the transcription of all four Rep proteins derived from their own promoters. This switch system was initially tested in the lacZ gene and a 600-fold induction of β-galactosidase activity was observed. Using the dual splicing switch strategy, we have subsequently established a number of AAV packaging cell lines from 293 cells, which showed a normal growth rate, high stability, and more importantly, high yields of AAV vectors. Such a gene control paradigm is also useful for other viruses, e.g., autonomous parvoviruses. Finally, the high-titer 293-based AAV packaging cell lines should greatly reduce the risk of wild-type adenovirus contamination and provide a scalable AAV vector production method for both preclinical and clinical studies.
机译:建立基于293细胞的稳定和高滴度腺相关病毒(AAV)包装细胞系的先前尝试均未成功,这主要归因于腺病毒E1激活的Rep基因表达,该基因对宿主细胞产生细胞抑制作用和细胞毒性作用。由于两个小Rep蛋白(Rep52 / 40)的泄漏表达,两个大AAV Rep蛋白(Rep78 / 68)的控制不足以消除不利影响。但是,由于其启动子位于Rep78 / 68的编码序列内,因此无法控制Rep52 / 40基因的表达。为了通过使用它们自己的启动子来严格调控所有四个Rep蛋白,我们开发了一种新型的基因控制范例,称为“双重剪接开关”,该模式通过在它们的共享编码区中插入一个内含有转录终止序列的内含子来破坏所有四个Rep基因。 LoxP网站。结果,p5和p19的Rep基因启动子的结构和活性均不受影响。但是,所有Rep转录本都提前终止,基因被灭活。 Cre蛋白去除终止子可重新激活所有四个从其自身启动子衍生的Rep蛋白的转录。最初在lacZ基因中测试了该开关系统,并观察到600倍的β-半乳糖苷酶活性诱导。使用双重剪接开关策略,我们随后从293细胞中建立了许多AAV包装细胞系,这些细胞系显示出正常的生长速度,高稳定性,更重要的是,AAV载体产量高。这样的基因控制范例也可用于其他病毒,例如自主细小病毒。最后,基于高滴度293的AAV包装细胞系应大大降低野生型腺病毒污染的风险,并为临床前和临床研究提供可扩展的AAV载体生产方法。

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