P5启动子介导的整合解释rAAV基因治疗后患者肝脏中的REP/CAP制造污染物
P5 promoter-mediated incorporation explains REP/CAP manufacturing contaminants in patient liver after rAAV gene therapy
medRxiv · 2026 年 9 月 14 日 · Mark A Brimble, Shaoyuan Tan, Sarah Buddle 等 6 人
此前对接受rAAV基因治疗Zolgensma(用于脊髓性肌萎缩症)的患者肝组织测序,发现肝细胞中存在来自生产过程的污染质粒序列,其中REP/CAP来源序列异常丰富,约占治疗性转基因的0.5–1%。研究者重新分析测序数据提出假设:污染源于Rep蛋白在AAV P5启动子处介导的整合。分析推断生产质粒中完整的P5启动子被直接放在rAAV衣壳基因下游,从头组装显示一段连续的污染物序列跨越REP和CAP基因并在P5内的Rep切口位点终止,部分REP/CAP读段与ITR来源序列相连。长读长数据也独立确认P5启动子是最常见的重组断点区域。这说明生产质粒中P5启动子的位置是可修改的rAAV产品纯度决定因素,可减少向患者转移的rAAV DNA污染物。尚未经同行评审。
为什么推荐给您:首次阐明rAAV生产中可避免的REP/CAP污染机制,对基因治疗产品纯度与患者安全有直接影响。
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摘要Abstract
Sequencing of liver tissue from a patient treated with the rAAV gene therapy Zolgensma for spinal muscular atrophy recently revealed contaminating plasmid sequences derived from rAAV manufacturing within the patient's hepatocytes. In particular, REP/CAP-derived sequences were remarkably abundant, corresponding to 0.5-1% of the therapeutic transgene. We hypothesized that these contaminants originated through Rep-mediated incorporation initiated at the AAV P5 promoter. Through reanalysis of the sequencing data, we inferred that an intact P5 promoter had been placed directly downstream of the rAAV capsid gene in the manufacturing plasmid. De novo assembly revealed a contiguous contaminant sequence spanning the rAAV REP and CAP genes and terminating within P5 at the Rep nicking site, immediately downstream of the Rep-binding element (RBE). This analysis also revealed a distinct vector-plasmid backbone contig consistent with reverse packaging. Among partially aligned REP/CAP reads, nearly 17% were linked to rAAV ITR-derived sequence at heterogeneous junctions. Long-read data independently identified the P5 promoter as the most frequent recombination breakpoint region. Together, these findings identify a defined, avoidable mechanism by which REP/CAP manufacturing contaminants arise. Positioning of the P5 promoter within the manufacturing plasmid is therefore a modifiable determinant of rAAV product purity and the transfer of rAAV DNA contaminants to recipient patients.