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腺相关病毒 VP3 结构域内随机插入 mCherry 后荧光衣壳的产生,不影响病毒感染力。

Random Insertion of mCherry Into VP3 Domain of Adeno-associated Virus Yields Fluorescent Capsids With no Loss of Infectivity.

机构信息

Department of Bioengineering, Rice University, Houston, Texas, USA.

出版信息

Mol Ther Nucleic Acids. 2012 Nov 13;1(11):e54. doi: 10.1038/mtna.2012.46.

Abstract

Adeno-associated virus (AAV)-derived vectors are promising gene delivery systems, and a number of design strategies have been pursued to improve their performance. For example, genetic insertion of proteins into the capsid may be used to achieve vector retargeting, reduced immunogenicity, or to track vector transport. Unfortunately, rational approaches to genetic insertion have experienced limited success due to the unpredictable context-dependent nature of protein folding and the complexity of the capsid's macroassembly. We report the construction and use of a frame-enriched DNase-based random insertion library based on AAV2 cap, called pAAV2_RaPID (Random Peptide Insertion by DNase). The fluorescent mCherry protein was inserted randomly throughout the AAV2 capsid and the library was selected for fluorescent and infectious variants. A capsid site was identified in VP3 that can tolerate the large protein insertion. In contrast to previous efforts to incorporate fluorescent proteins into the AAV2 capsid, the isolated mCherry mutant maintains native infectivity while displaying robust fluorescence. Collectively, these results demonstrate that the pAAV2_RaPID platform library can be used to create fully infectious AAV vectors carrying large functional protein domains on the capsid.Molecular Therapy - Nucleic Acids (2012) 1, e54; doi:10.1038/mtna.2012.46; published online 13 November 2012.

摘要

腺相关病毒(AAV)衍生载体是很有前途的基因传递系统,已经提出了许多设计策略来提高它们的性能。例如,可以通过遗传插入衣壳蛋白来实现载体靶向重定位、降低免疫原性或跟踪载体运输。不幸的是,由于蛋白质折叠的不可预测的上下文依赖性和衣壳的宏组装的复杂性,合理的遗传插入方法的应用受到了限制。我们报告了基于 AAV2 衣壳的构建和使用富含框架的 DNase 随机插入文库,称为 pAAV2_RaPID(随机肽插入由 DNase)。荧光 mCherry 蛋白被随机插入到 AAV2 衣壳中,并对荧光和感染变体进行文库选择。在 VP3 中鉴定到一个可以容纳大蛋白插入的衣壳位点。与之前将荧光蛋白掺入 AAV2 衣壳的努力不同,分离出的 mCherry 突变体保持了天然的感染性,同时显示出强大的荧光。总的来说,这些结果表明,pAAV2_RaPID 平台文库可用于创建完全具有感染性的 AAV 载体,在衣壳上携带大的功能蛋白结构域。分子治疗-核酸(2012)1,e54;doi:10.1038/mtna.2012.46;在线发表于 2012 年 11 月 13 日。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6b93/3511673/094cadcf9d89/mtna201246f1.jpg

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