Structure and Cell Biology of Viruses Lab, CIC bioGUNE, Basque Research and Technology Alliance (BRTA), Derio, Spain.
Viralgen Vector Core S.L., San Sebastian, Spain.
Hum Gene Ther. 2022 Nov;33(21-22):1142-1156. doi: 10.1089/hum.2022.119.
AAV virion biology is still lacking a complete understanding of the role that the various structural subunits (VP1, 2, and 3) play in virus assembly, infectivity, and therapeutic delivery for clinical indications. In this study, we focus on the less studied adeno-associated virus AAV3B and generate a collection of AAV plasmid substrates that assemble virion particles deficient specifically in VP1, VP2, or VP1 and 2 structural subunits. Using a collection of biological and structural assays, we observed that virions devoid of VP1, VP2, or VP1 and 2 efficiently assembled virion particles, indistinguishable by cryoelectron microscopy (cryo-EM) from that of wild type (WT), but unique in virion transduction (WT > VP2 > VP1 > VP1 and 2 mutants). We also observed that the missing structural subunit was mostly compensated by additional VP3 protomers in the formed virion particle. Using cryo-EM analysis, virions fell into three classes, namely full, empty, and partially filled, based on comparison of density values within the capsid. Further, we characterize virions described as "broken" or "disassembled" particles, and provide structural information that supports the particle dissolution occurring through the two-fold symmetry sites. Finally, we highlight the unique value of employing cryo-EM as an essential tool for release criteria with respect to AAV manufacturing.
腺相关病毒(AAV)病毒体的生物学仍然缺乏对各种结构亚基(VP1、2 和 3)在病毒组装、感染力和治疗性递送至临床适应证中的作用的全面了解。在这项研究中,我们专注于研究较少的腺相关病毒 AAV3B,并生成了一组 AAV 质粒底物,这些质粒底物专门在 VP1、VP2 或 VP1 和 2 结构亚基缺失的情况下组装病毒体颗粒。使用一系列生物学和结构测定法,我们观察到缺乏 VP1、VP2 或 VP1 和 2 的病毒体有效地组装了病毒体颗粒,通过冷冻电镜(cryo-EM)与野生型(WT)的病毒体颗粒无法区分,但在病毒体转导方面具有独特性(WT > VP2 > VP1 > VP1 和 2 突变体)。我们还观察到,缺失的结构亚基主要由形成的病毒体颗粒中的额外 VP3 原聚体来补偿。通过 cryo-EM 分析,根据衣壳内的密度值比较,病毒体分为三类,即完整、空和部分填充。此外,我们描述了“破裂”或“解体”颗粒的病毒体,并提供了支持通过二倍对称位点发生颗粒溶解的结构信息。最后,我们强调了 cryo-EM 作为 AAV 制造释放标准的重要工具的独特价值。