Department of Chemistry, Boston College, 2609 Beacon Street, Chestnut Hill, MA, 02467, USA.
Angew Chem Int Ed Engl. 2016 Aug 26;55(36):10645-9. doi: 10.1002/anie.201604067. Epub 2016 Aug 2.
The ability to target the adeno-associated virus (AAV) to specific types of cells, by altering the cell-surface receptor it binds, is desirable to generate safe and efficient therapeutic vectors. Chemical attachment of receptor-targeting agents onto the AAV capsid holds potential to alter its tropism, but is limited by the lack of site specificity of available conjugation strategies. The development of an AAV production platform is reported that enables incorporation of unnatural amino acids (UAAs) into specific sites on the virus capsid. Incorporation of an azido-UAA enabled site-specific attachment of a cyclic-RGD peptide onto the capsid, retargeting the virus to the αv β3 integrin receptors, which are overexpressed in tumor vasculature. Retargeting ability was site-dependent, underscoring the importance of achieving site-selective capsid modification. This work provides a general chemical approach to introduce various receptor binding agents onto the AAV capsid with site selectivity to generate optimized vectors with engineered infectivity.
通过改变腺相关病毒(AAV)结合的细胞表面受体,将其靶向特定类型的细胞的能力是生成安全有效的治疗性载体所需要的。通过将受体靶向剂化学连接到 AAV 衣壳上,可以改变其趋向性,但受到现有缀合策略缺乏位点特异性的限制。本文报道了一种 AAV 生产平台的开发,该平台能够将非天然氨基酸(UAAs)掺入病毒衣壳的特定部位。叠氮基-UAA 的掺入使环状 RGD 肽能够在衣壳上进行位点特异性附着,从而将病毒重新靶向到肿瘤血管中过度表达的αvβ3 整合素受体。靶向能力取决于部位,这强调了实现衣壳修饰的位点选择性的重要性。这项工作提供了一种通用的化学方法,可将各种受体结合剂引入 AAV 衣壳中,并具有位点选择性,从而生成具有工程感染性的优化载体。