Radukic Marco T, Brandt David, Haak Markus, Müller Kristian M, Kalinowski Jörn
Faculty of Technology, Bielefeld University, D-33501 Bielefeld, Germany.
Center for Biotechnology (CeBiTec), Bielefeld University, D-33501 Bielefeld, Germany.
NAR Genom Bioinform. 2020 Sep 28;2(4):lqaa074. doi: 10.1093/nargab/lqaa074. eCollection 2020 Dec.
Next-generation sequencing of single-stranded DNA (ssDNA) enables transgene characterization of gene therapy vectors such as adeno-associated virus (AAV), but current library generation uses complicated and potentially biased second-strand synthesis. We report that libraries for nanopore sequencing of ssDNA can be conveniently created without second-strand synthesis using a transposase-based protocol. We show for bacteriophage M13 ssDNA that the MuA transposase has unexpected residual activity on ssDNA, explained in part by transposase action on transient double-stranded hairpins. In case of AAV, library creation is additionally aided by genome hybridization. We demonstrate the power of direct sequencing combined with nanopore long reads by characterizing AAV vector transgenes. Sequencing yielded reads up to full genome length, including GC-rich inverted terminal repeats. Unlike short-read techniques, single reads covered genome-genome and genome-contaminant fusions and other recombination events, whilst additionally providing information on epigenetic methylation. Single-nucleotide variants across the transgene cassette were revealed and secondary genome packaging signals were readily identified. Moreover, comparison of sequence abundance with quantitative polymerase chain reaction results demonstrated the technique's future potential for quantification of DNA impurities in AAV vector stocks. The findings promote direct nanopore sequencing as a fast and versatile platform for ssDNA characterization, such as AAV ssDNA in research and clinical settings.
单链DNA(ssDNA)的新一代测序技术能够对腺相关病毒(AAV)等基因治疗载体进行转基因表征,但目前的文库构建使用复杂且可能存在偏差的第二链合成方法。我们报告称,使用基于转座酶的方案,无需进行第二链合成即可方便地构建用于ssDNA纳米孔测序的文库。我们发现,对于噬菌体M13 ssDNA,MuA转座酶在ssDNA上具有意想不到的残留活性,部分原因是转座酶对瞬时双链发夹结构的作用。对于AAV,基因组杂交可辅助文库构建。我们通过对AAV载体转基因进行表征,展示了直接测序与纳米孔长读长相结合的强大功能。测序产生的读长可达全基因组长度,包括富含GC的反向末端重复序列。与短读长技术不同,单条读长覆盖了基因组-基因组和基因组-污染物融合以及其他重组事件,同时还提供了表观遗传甲基化信息。揭示了转基因盒中的单核苷酸变体,并轻松识别了二级基因组包装信号。此外,将序列丰度与定量聚合酶链反应结果进行比较,证明了该技术在定量AAV载体原液中DNA杂质方面的未来潜力。这些发现推动了直接纳米孔测序作为一种快速且通用的平台,用于ssDNA表征,如在研究和临床环境中的AAV ssDNA。