Department of Chemical and Biomolecular Engineering, University of California, Berkeley, Berkeley, CA, USA.
Department of Bioengineering, University of California, Berkeley, Berkeley, CA, USA.
Mol Ther. 2018 Jan 3;26(1):304-319. doi: 10.1016/j.ymthe.2017.09.006. Epub 2017 Sep 8.
Directed evolution continues to expand the capabilities of complex biomolecules for a range of applications, such as adeno-associated virus vectors for gene therapy; however, advances in library design and selection strategies are key to develop variants that overcome barriers to clinical translation. To address this need, we applied structure-guided SCHEMA recombination of the multimeric adeno-associated virus (AAV) capsid to generate a highly diversified chimeric library with minimal structural disruption. A stringent in vivo Cre-dependent selection strategy was implemented to identify variants that transduce adult neural stem cells (NSCs) in the subventricular zone. A novel variant, SCH9, infected 60% of NSCs and mediated 24-fold higher GFP expression and a 12-fold greater transduction volume than AAV9. SCH9 utilizes both galactose and heparan sulfate as cell surface receptors and exhibits increased resistance to neutralizing antibodies. These results establish the SCHEMA library as a valuable tool for directed evolution and SCH9 as an effective gene delivery vector to investigate subventricular NSCs.
定向进化继续拓展复杂生物分子的功能,以满足多种应用的需求,如腺相关病毒载体用于基因治疗;然而,文库设计和选择策略的进步是开发克服临床转化障碍的变体的关键。为了解决这一需求,我们应用结构导向的 SCHEMA 重组多聚体腺相关病毒(AAV)衣壳,生成具有最小结构破坏的高度多样化嵌合文库。实施了严格的体内 Cre 依赖性选择策略,以鉴定可转导侧脑室下区成年神经干细胞(NSC)的变体。新型变体 SCH9 感染了 60%的 NSCs,并介导 GFP 表达增加 24 倍,转导体积增加 12 倍,比 AAV9 更高。SCH9 利用半乳糖和硫酸乙酰肝素作为细胞表面受体,并表现出对中和抗体的更高抗性。这些结果确立了 SCHEMA 文库作为定向进化的有价值工具,以及 SCH9 作为有效基因传递载体,用于研究侧脑室 NSCs。