Biophysical characterization of adeno-associated virus capsid through the viral transduction life cycle.

IF 3.6 Q2 BIOTECHNOLOGY & APPLIED MICROBIOLOGY Journal, genetic engineering & biotechnology Pub Date : 2023-05-17 DOI:10.1186/s43141-023-00518-5
Yanqiao Shawn Xiang, Gang Gary Hao
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Abstract

Adeno-associated virus (AAV) vectors have emerged as the leading delivery platforms for gene therapy. Throughout the life cycle of the virions, the capsid vector carries out diverse functions, ranging from cell surface receptor engagement, cellular entry, endosomal escape, nuclear import to new particle packaging, and assembly. Each of these steps is mediated by exquisite structure features of the viral capsid and its interaction with viral genome, Rep proteins, and cellular organelle and apparatus. In this brief review, we provide an overview of results from over a decade of extensive biophysical studies of the capsid employing various techniques. The remaining unaddressed questions and perspective are also discussed. The detailed understanding of the structure and function interplay would provide insight to the strategy for improving the efficacy and safety of the viral vectors.

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通过病毒转导生命周期研究腺相关病毒衣壳的生物物理特性。
腺相关病毒(AAV)载体已成为基因治疗的主要传递平台。在病毒粒子的整个生命周期中,衣壳载体具有多种功能,从细胞表面受体参与、细胞进入、内体逃逸、核输入到新粒子的包装和组装。每一个步骤都是由病毒衣壳的精致结构特征及其与病毒基因组、Rep蛋白、细胞器和装置的相互作用介导的。在这篇简短的综述中,我们概述了十多年来使用各种技术对衣壳进行广泛的生物物理研究的结果。还讨论了尚未解决的问题和前景。对结构和功能相互作用的详细了解将为提高病毒载体的有效性和安全性的策略提供见解。
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