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腺相关病毒衣壳在基因转移中的作用。

The role of the adeno-associated virus capsid in gene transfer.

作者信息

Van Vliet Kim M, Blouin Veronique, Brument Nicole, Agbandje-McKenna Mavis, Snyder Richard O

机构信息

Department of Molecular Genetics and Microbiology, University of Florida, Gainesville, FL, USA.

出版信息

Methods Mol Biol. 2008;437:51-91. doi: 10.1007/978-1-59745-210-6_2.

Abstract

Adeno-associated virus (AAV) is one of the most promising viral gene transfer vectors that has been shown to effect long-term gene expression and disease correction with low toxicity in animal models, and is well tolerated in human clinical trials. The surface of the AAV capsid is an essential component that is involved in cell binding, internalization, and trafficking within the targeted cell. Prior to developing a gene therapy strategy that utilizes AAV, the serotype should be carefully considered since each capsid exhibits a unique tissue tropism and transduction efficiency. Several approaches have been undertaken in an effort to target AAV vectors to specific cell types, including utilizing natural serotypes that target a desired cellular receptor, producing pseudotyped vectors, and engineering chimeric and mosaic AAV capsids. These capsid modifications are being incorporated into vector production and purification methods that provide for the ability to scale-up the manufacturing process to support human clinical trials. Protocols for small-scale and large-scale production of AAV, as well as assays to characterize the final vector product, are presented here. The structures of AAV2, AAV4, and AAV5 have been solved by X-ray crystallography or cryo-electron microscopy (cryo-EM), and provide a basis for rational vector design in developing customized capsids for specific targeting of AAV vectors. The capsid of AAV has been shown to be remarkably stable, which is a desirable characteristic for a gene therapy vector; however, recently it has been shown that the AAV serotypes exhibit differential susceptibility to proteases. The capsid fragmentation pattern when exposed to various proteases, as well as the susceptibility of the serotypes to a series of proteases, provides a unique fingerprint for each serotype that can be used for capsid identity validation. In addition to serotype identification, protease susceptibility can also be utilized to study dynamic structural changes that must occur for the AAV capsid to perform its various functions during the virus life cycle. The use of proteases for structural studies in solution complements the crystal structural studies of the virus. A generic protocol based on proteolysis for AAV serotype identification is provided here.

摘要

腺相关病毒(AAV)是最有前景的病毒基因转移载体之一,在动物模型中已显示出能实现长期基因表达和疾病矫正,且毒性低,在人体临床试验中耐受性良好。AAV衣壳表面是参与细胞结合、内化以及在靶细胞内运输的重要组成部分。在制定利用AAV的基因治疗策略之前,应仔细考虑血清型,因为每种衣壳都表现出独特的组织嗜性和转导效率。为了使AAV载体靶向特定细胞类型,已经采取了几种方法,包括利用靶向所需细胞受体的天然血清型、生产假型载体以及构建嵌合和镶嵌AAV衣壳。这些衣壳修饰正被纳入载体生产和纯化方法中,这些方法能够扩大生产规模以支持人体临床试验。本文介绍了AAV小规模和大规模生产的方案以及表征最终载体产品的检测方法。AAV2、AAV4和AAV5的结构已通过X射线晶体学或冷冻电子显微镜(cryo-EM)解析,为开发定制衣壳以实现AAV载体的特异性靶向提供了合理的载体设计基础。已证明AAV衣壳非常稳定,这是基因治疗载体的一个理想特性;然而,最近发现AAV血清型对蛋白酶的敏感性存在差异。暴露于各种蛋白酶时的衣壳片段化模式以及血清型对一系列蛋白酶的敏感性,为每种血清型提供了独特的指纹图谱,可用于衣壳身份验证。除了血清型鉴定外,蛋白酶敏感性还可用于研究AAV衣壳在病毒生命周期中执行其各种功能时必须发生的动态结构变化。在溶液中使用蛋白酶进行结构研究补充了病毒的晶体结构研究。本文提供了一种基于蛋白水解的AAV血清型鉴定通用方案。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4260/7120696/f1950b229e13/978-1-59745-210-6_2_Fig1_HTML.jpg

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