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Fast-Seq: A Simple Method for Rapid and Inexpensive Validation of Packaged Single-Stranded Adeno-Associated Viral Genomes in Academic Settings

机译:Fast-Seq:一种用于学术环境中包装的单链腺相关病毒基因组的快速廉价验证的简单方法

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摘要

Adeno-associated viral (AAV) vectors have shown great promise in gene delivery as evidenced by recent FDA approvals. Despite efforts to optimize manufacturing for good manufacturing practice (GMP) productions, few academic laboratories have the resources to assess vector composition. One critical component of vector quality is packaged genome fidelity. Errors in viral genome replication and packaging can result in the incorporation of faulty genomes with mutations, truncations, or rearrangements, compromising vector potency. Thus, sequence validation of packaged genome composition is an important quality control (QC), even in academic settings. We developed Fast-Seq, an end-to-end method for extraction, purification, sequencing, and data analysis of packaged single-stranded AAV (ssAAV) genomes intended for non-GMP preclinical environments. We validated Fast-Seq on ssAAV vectors with three different genome compositions (CAG-GFP, CAG-tdTomato, EF1α-FLuc), three different genome sizes (2.9, 3.6, 4.4 kb), packaged in four different capsid serotypes (AAV1, AAV2, AAV5, and AAV8), and produced using the two most common production methods (Baculovirus- and human HEK293), from both common commercial vendors and academic core facilities supplying academic laboratories. We achieved an average genome coverage of >1,400 × and an average inverted terminal repeat coverage of >280 × , despite the many differences in composition of each ssAAV sample. When compared with other ssAAV next-generation sequencing (NGS) methods for GMP settings, Fast-Seq has several unique advantages: Tn5 transposase-based fragmentation rather than sonication, 125 × less input DNA, simpler adapter ligation, compatibility with commonly available inexpensive sequencing instruments, and free open-source data analysis code in a preassembled customizable Docker container designed for novices. Fast-Seq can be completed in 18 h, is more cost-effective than other NGS methods, and is more accurate than Sanger sequencing, which is generally only applied at 1–2 × sequencing depth. Fast-Seq is a rapid, simple, and inexpensive methodology to validate packaged ssAAV genomes in academic settings.
机译:腺相关病毒(AAV)载体在最近的FDA批准中证明了在基因传递方面的巨大前景。尽管为优化良好生产规范(GMP)生产而优化生产的努力,很少有学术实验室具备评估载体组成的资源。载体质量的关键要素之一就是包装的基因组保真度。病毒基因组复制和包装中的错误可能导致掺入具有突变,截短或重排的错误基因组,从而损害了载体的效力。因此,即使在学术场合,包装基因组组成的序列验证也是重要的质量控制(QC)。我们开发了Fast-Seq,一种用于非GMP临床前环境的包装单链AAV(ssAAV)基因组的提取,纯化,测序和数据分析的端到端方法。我们在ssAAV载体上验证了Fast-Seq,该载体具有三种不同的基因组组成(CAG-GFP,CAG-tdTomato,EF1α-FLuc),三种不同的基因组大小(2.9、3.6、4.4?kb),包装成四种不同的衣壳血清型(AAV1,AAV2 ,AAV5和AAV8),并使用两种最常见的生产方法(杆状病毒和人类HEK293)从共同的商业供应商和提供学术实验室的学术核心机构生产。尽管每个ssAAV样品的成分差异很大,但我们的平均基因组覆盖率均> 1,400×,而反向末端重复序列的平均覆盖率> 280×。与其他用于GMP设置的ssAAV下一代测序(NGS)方法相比,Fast-Seq具有几个独特的优势:基于Tn5转座酶的片段化而不是超声处理,输入量少125×DNA,更简单的衔接子连接以及与通常廉价的测序的兼容性仪器和免费的开源数据分析代码,这些代码是为新手设计的预组装可定制Docker容器。 Fast-Seq可以在18 h内完成,比其他NGS方法更具成本效益,并且比Sanger测序更准确,后者通常仅在1-2××的测序深度使用。 Fast-Seq是一种快速,简单且便宜的方法,可在学术环境中验证包装的ssAAV基因组。

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