Zhang Junping, Yu Xiangping, Chrzanowski Matthew, Tian Jiahe, Pouchnik Derek, Guo Ping, Herzog Roland W, Xiao Weidong
Herman B Wells Center for Pediatric Research, Indiana University School of Medicine, Indianapolis, IN 46202, USA.
Nikegen, Wynnewood, PA 19096, USA.
Mol Ther Methods Clin Dev. 2024 Feb 19;32(1):101215. doi: 10.1016/j.omtm.2024.101215. eCollection 2024 Mar 14.
The unique palindromic inverted terminal repeats (ITRs) and single-stranded nature of adeno-associated virus (AAV) DNA are major hurdles to current sequencing technologies. Due to these characteristics, sequencing noncanonical AAV genomes present in AAV vector preparations remains challenging. To address this limitation, we developed thorough molecule configuration analysis of noncanonical AAV genomes (TMCA-AAV-seq). TMCA-AAV-seq takes advantage of the documented AAV packaging mechanism in which encapsidation initiates from its 3' ITR, for AAV-seq library construction. Any AAV genome with a 3' ITR is converted to a template suitable to adapter addition by a Bst DNA polymerase-mediated extension reaction. This extension reaction helps fix ITR heterogeneity in the AAV population and allows efficient adapter addition to even noncanonical AAV genomes. The resulting library maintains the original AAV genome configurations without introducing undesired changes. Subsequently, long-read sequencing can be performed by the Pacific Biosciences (PacBio) single-molecule, real-time (SMRT) sequencing technology platform. Finally, through comprehensive data analysis, we can recover canonical, noncanonical AAV DNA, and non-AAV vector DNA sequences, along with their molecular configurations. Our method is a robust tool for profiling thorough AAV-population genomes. TMCA-AAVseq can be further extended to all parvoviruses and their derivative vectors.
腺相关病毒(AAV)DNA独特的回文倒置末端重复序列(ITRs)和单链性质是当前测序技术的主要障碍。由于这些特性,对AAV载体制剂中存在的非典型AAV基因组进行测序仍然具有挑战性。为了解决这一限制,我们开发了非典型AAV基因组的全面分子构型分析(TMCA-AAV-seq)。TMCA-AAV-seq利用已记录的AAV包装机制,即从其3' ITR开始进行衣壳化,用于构建AAV-seq文库。任何具有3' ITR的AAV基因组都可以通过Bst DNA聚合酶介导的延伸反应转化为适合添加接头的模板。这种延伸反应有助于固定AAV群体中的ITR异质性,并允许向甚至是非典型AAV基因组高效添加接头。所得文库保持了原始AAV基因组构型,而不会引入不期望的变化。随后,可以通过太平洋生物科学公司(PacBio)的单分子实时(SMRT)测序技术平台进行长读长测序。最后,通过全面的数据分析,我们可以恢复典型、非典型AAV DNA以及非AAV载体DNA序列及其分子构型。我们的方法是全面分析AAV群体基因组的强大工具。TMCA-AAVseq可以进一步扩展到所有细小病毒及其衍生载体。