University of North Carolina, Department of Chemistry, Chapel Hill, North Carolina 27599, United States.
University of Arizona, Department of Chemistry and Biochemistry, Tucson, Arizona 85721, United States.
J Am Soc Mass Spectrom. 2023 Dec 6;34(12):2811-2821. doi: 10.1021/jasms.3c00321. Epub 2023 Nov 27.
Adeno-associated virus (AAV) capsids are among the leading gene delivery platforms used to treat a vast array of human diseases and conditions. AAVs exist in a variety of serotypes due to differences in viral protein (VP) sequences with distinct serotypes targeting specific cells and tissues. As the utility of AAVs in gene therapy increases, ensuring their specific composition is imperative for the correct targeting and gene delivery. From a quality control perspective, current analytical tools are limited in their selectivity for viral protein (VP) subunits due to their sequence similarities, instrumental difficulties in assessing the large molecular weights of intact capsids, and the uncertainty in distinguishing empty and filled capsids. To address these challenges, we combined two distinct analytical workflows that assess the intact capsids and VP subunits separately. First, a selective temporal overview of resonant ion (STORI)-based charge detection-mass spectrometry (CD-MS) was applied for characterization of the intact capsids. Liquid chromatography, ion mobility spectrometry, and mass spectrometry (LC-IMS-MS) separations were then used for the capsid denaturing measurements. This multimethod combination was applied to three AAV serotypes (AAV2, AAV6, and AAV8) to evaluate their intact empty and filled capsid ratios and then examine the distinct VP sequences and modifications present.
腺相关病毒 (AAV) 衣壳是用于治疗各种人类疾病和病症的主要基因传递平台之一。由于病毒蛋白 (VP) 序列的差异,AAV 存在多种血清型,不同的血清型针对特定的细胞和组织。随着 AAV 在基因治疗中的应用不断增加,确保其特定组成对于正确的靶向和基因传递至关重要。从质量控制的角度来看,由于其序列相似性,当前的分析工具对病毒蛋白 (VP) 亚基的选择性有限,评估完整衣壳的大分子量存在仪器困难,并且难以区分空衣壳和满衣壳。为了解决这些挑战,我们结合了两种不同的分析工作流程,分别评估完整的衣壳和 VP 亚基。首先,应用基于共振离子 (STORI) 的电荷检测质谱 (CD-MS) 进行选择性时间概述,以对完整的衣壳进行表征。然后使用液相色谱、离子淌度谱和质谱 (LC-IMS-MS) 分离进行衣壳变性测量。这种多方法组合应用于三种 AAV 血清型 (AAV2、AAV6 和 AAV8),以评估它们的完整空衣壳和满衣壳的比例,然后检查存在的不同 VP 序列和修饰。