Department of Biochemistry and Molecular Biology, Nippon Medical School, Tokyo, Japan.
Department of Neurology, Faculty of Medicine, University of Tsukuba, Ibaraki, Japan.
Gene Ther. 2022 Aug;29(7-8):449-457. doi: 10.1038/s41434-021-00299-x. Epub 2021 Oct 11.
The application of recombinant adeno-associated viruses (rAAVs) for gene therapy faces certain challenges, including genome packaging of non-vector sequences. Inverted terminal repeats (ITRs) flanking the rAAV genome, comprising three inverted repeat regions (A, B, and C) and a non-inverted repeat region (D), contribute to non-vector genome packaging. We aimed to circumvent this issue by comparing the properties of rAAV containing DNA plasmids and PCR-amplified transgenes, including a single copy of the AD sequence (rAAV-pAD/L-AD, respectively), which is a truncated form of ITR, with those of wild-type ITR genome (single-stranded and self-complementary AAV; ssAAV and scAAV). The packaging efficiency of rAAV-pAD/L-AD was found to be comparable to that of scAAV, whereas the transduction efficiency of rAAV-pAD/L-AD was lower than that of ss/scAAV. Remarkably, rAAV-L-AD reduced the plasmid backbone packaging contamination compared to ss/scAAV. Furthermore, to confirm the functionality of this system, we generated a rAAV-L-AD harboring a short hairpin RNA targeting ATP5B (rAAV-L-AD-shATP5B) and found that it caused a significant decrease in ATP5B mRNA levels when transduced into HEK293EB cells, suggesting that it was functional. Thus, our system successfully packaged L-AD into capsids with minimal contamination of plasmid DNA, offering a novel functional packaging platform without causing plasmid backbone encapsidation.
腺相关病毒(rAAV)在基因治疗中的应用面临一些挑战,包括非载体序列的基因组包装。rAAV 基因组两侧的反向末端重复序列(ITR)由三个反向重复区(A、B 和 C)和一个非反向重复区(D)组成,有助于非载体基因组包装。我们旨在通过比较含有 DNA 质粒和 PCR 扩增转基因的 rAAV 的性质来解决这个问题,包括 AD 序列的单个拷贝(rAAV-pAD/L-AD,分别),这是 ITR 的截断形式,以及野生型 ITR 基因组(单链和自我互补的 AAV;ssAAV 和 scAAV)的性质。发现 rAAV-pAD/L-AD 的包装效率与 scAAV 相当,而 rAAV-pAD/L-AD 的转导效率低于 ss/scAAV。值得注意的是,与 ss/scAAV 相比,rAAV-L-AD 减少了质粒骨架包装污染。此外,为了确认该系统的功能,我们生成了一种携带靶向 ATP5B 的短发夹 RNA 的 rAAV-L-AD(rAAV-L-AD-shATP5B),并发现当转导到 HEK293EB 细胞中时,它导致 ATP5B mRNA 水平显著降低,表明其具有功能。因此,我们的系统成功地将 L-AD 包装到衣壳中,质粒 DNA 的污染最小,提供了一种新的功能包装平台,而不会导致质粒骨架包封。