Herman B Wells Center for Pediatric Research, Indiana University, Indianapolis, Indiana, USA.
Lewis Katz School of Medicine, Temple University, Philadelphia, Pennsylvania, USA.
J Med Virol. 2023 Jan;95(1):e28433. doi: 10.1002/jmv.28433.
Recombinant adeno-associated virus (rAAV) vectors carry a cassette of interest retaining only the inverted terminal repeats (ITRs) from the wild-type virus. Conventional rAAV production primarily uses a vector plasmid as well as helper genes essential for AAV replication and packaging. Nevertheless, plasmid backbone related contaminants have been a major source of vector heterogeneity. The mechanism driving the contamination phenomenon has yet to be elucidated. Here we identified cryptic resolution sites in the plasmid backbone as a key source for producing snapback genomes, which leads to the increase of vector genome heterogeneity in encapsidated virions. By using a single ITR plasmid as a model molecule and mapping subgenomic particles, we found that there exist a few typical DNA break hotspots in the vector DNA plasmid backbone, for example, on the ampicillin DNA element, called aberrant rescue sites. DNA around these specific breakage sites may assume some typical secondary structures. Similar to normal AAV vectors, plasmid DNA with a single ITR was able to rescue and replicate efficiently. These subgenomic DNA species significantly compete for trans factors required for rAAV rescue, replication, and packaging. The replication of single ITR contaminants during AAV production is independent of size. Packaging of these species is greatly affected by its size. A single ITR and a cryptic resolution site in the plasmid work synergistically, likely causing a source of plasmid backbone contamination.
重组腺相关病毒(rAAV)载体携带一个感兴趣的盒,仅保留野生型病毒的反向末端重复序列(ITR)。传统的 rAAV 生产主要使用载体质粒以及 AAV 复制和包装所必需的辅助基因。然而,质粒骨架相关污染物一直是载体异质性的主要来源。驱动污染现象的机制尚未阐明。在这里,我们确定了质粒骨架中的隐匿性分辨率位点是产生回跳基因组的关键来源,这导致了封装病毒粒子中载体基因组异质性的增加。通过使用单个 ITR 质粒作为模型分子并绘制亚基因组粒子,我们发现载体 DNA 质粒骨架中存在一些典型的 DNA 断裂热点,例如氨苄青霉素 DNA 元件上的异常拯救位点。这些特定断裂位点周围的 DNA 可能具有一些典型的二级结构。与正常的 AAV 载体一样,具有单个 ITR 的质粒 DNA 能够有效地拯救和复制。这些亚基因组 DNA 种类会强烈竞争 rAAV 拯救、复制和包装所需的转录因子。在 AAV 生产过程中,单个 ITR 污染物的复制独立于大小。这些物质的包装大小受到极大影响。单个 ITR 和质粒中的隐匿性分辨率位点协同作用,可能是质粒骨架污染的来源之一。