Reid C A, Boye S L, Hauswirth W W, Lipinski D M
Department of Ophthalmology, Eye Institute, Medical College of Wisconsin, Milwaukee, WI, USA.
Department of Ophthalmology, College of Medicine, University of Florida, Gainesville, FL, USA.
Gene Ther. 2017 Aug;24(8):462-469. doi: 10.1038/gt.2017.50. Epub 2017 Jun 15.
The production of high-titer recombinant adeno-associated virus (rAAV) vector is essential for treatment of genetic diseases affecting the retina and choroid, where anatomical constraints may limit injectable volumes. Problematically, cytotoxicity arising from overexpression of the transgene during vector production frequently leads to a reduction in vector yield. Herein, we evaluate the use of microRNA (miRNA)-mediated silencing to limit overexpression of cytotoxic transgenes during packaging as a method of increasing vector yield. We examined if post-transcriptional regulation of transgenes during packaging via miRNA technology would lead to increased rAAV yields. Our results demonstrate that silencing of cytotoxic transgenes during production resulted in up to a 22-fold increase in vector yield. The inclusion of organ-specific miRNA sequences improved biosafety by limiting off-target expression following systemic rAAV administration. The small size (22-23 bp) of the target site allows for the inclusion of multiple copies into the vector with minimal impact on coding capacity. Taken together, our results suggest that inclusion of miRNA target sites into the 3'-untranslated region of the AAV cassette allow for silencing of cytotoxic transgenes during vector production leading to improved vector yield, in addition to increasing targeting specificity without reliance on cell-specific promoters.
高滴度重组腺相关病毒(rAAV)载体的生产对于治疗影响视网膜和脉络膜的遗传疾病至关重要,因为解剖学限制可能会限制可注射体积。问题在于,载体生产过程中由于转基因过度表达产生的细胞毒性常常导致载体产量降低。在此,我们评估使用微小RNA(miRNA)介导的沉默来限制包装过程中细胞毒性转基因的过度表达,以此作为提高载体产量的一种方法。我们研究了通过miRNA技术在包装过程中转基因的转录后调控是否会提高rAAV产量。我们的结果表明,生产过程中细胞毒性转基因的沉默使载体产量提高了22倍。包含器官特异性miRNA序列通过限制全身给予rAAV后的脱靶表达提高了生物安全性。靶位点的小尺寸(22 - 23bp)允许在载体中包含多个拷贝,而对编码能力的影响最小。综上所述,我们的结果表明,在AAV盒的3'非翻译区包含miRNA靶位点可在载体生产过程中使细胞毒性转基因沉默,从而提高载体产量,此外还能在不依赖细胞特异性启动子的情况下提高靶向特异性。