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从肽插入文库中筛选新型水泡性口炎病毒糖蛋白变体以增强逆转录病毒和慢病毒载体的纯化

Selection of novel vesicular stomatitis virus glycoprotein variants from a peptide insertion library for enhanced purification of retroviral and lentiviral vectors.

作者信息

Yu Julie H, Schaffer David V

机构信息

Department of Chemical Engineering, University of California, Berkeley, Berkeley, CA 94720-1462, USA.

出版信息

J Virol. 2006 Apr;80(7):3285-92. doi: 10.1128/JVI.80.7.3285-3292.2006.

Abstract

The introduction of new features or functions that are not present in an original protein is a significant challenge in protein engineering. For example, modifications to vesicular stomatitis virus glycoprotein (VSV-G), which is commonly used to pseudotype retroviral and lentiviral vectors for gene delivery, have been hindered by a lack of structural knowledge of the protein. We have developed a transposon-based approach that randomly incorporates designed polypeptides throughout a protein to generate saturated insertion libraries and a subsequent high-throughput selection process in mammalian cells that enables the identification of optimal insertion sites for a novel designed functionality. This method was applied to VSV-G in order to construct a comprehensive library of mutants whose combined members have a His6 tag inserted at likely every site in the original protein sequence. Selecting the library via iterative retroviral infections of mammalian cells led to the identification of several VSV-G-His6 variants that were able to package high-titer viral vectors and could be purified by Ni-nitrilotriacetic acid affinity chromatography. Column purification of vectors reduced protein and DNA impurities more than 5,000-fold and 14,000-fold, respectively, from the viral supernatant. This substantially improved purity elicited a weaker immune response in the brain, without altering the infectivity or tropism from wild-type VSV-G-pseudotyped vectors. This work applies a powerful new tool for protein engineering to construct novel viral envelope variants that can greatly improve the safety and use of retroviral and lentiviral vectors for clinical gene therapy. Furthermore, this approach of library generation and selection can readily be extended to other challenges in protein engineering.

摘要

在原始蛋白质中引入不存在的新特征或功能是蛋白质工程中的一项重大挑战。例如,常用于伪型逆转录病毒和慢病毒载体以进行基因递送的水疱性口炎病毒糖蛋白(VSV-G),由于缺乏该蛋白质的结构知识,其修饰受到了阻碍。我们开发了一种基于转座子的方法,该方法在整个蛋白质中随机掺入设计好的多肽以生成饱和插入文库,并在哺乳动物细胞中进行后续的高通量筛选过程,从而能够识别新设计功能的最佳插入位点。该方法应用于VSV-G,以构建一个突变体综合文库,其组合成员在原始蛋白质序列的每个可能位点都插入了一个His6标签。通过对哺乳动物细胞进行迭代逆转录病毒感染来筛选该文库,从而鉴定出几种VSV-G-His6变体,它们能够包装高滴度病毒载体,并可通过镍-次氮基三乙酸亲和层析进行纯化。从病毒上清液中通过柱纯化载体分别将蛋白质和DNA杂质减少了5000倍和14000倍以上。这种显著提高的纯度在大脑中引发了较弱的免疫反应,同时不改变野生型VSV-G伪型载体的感染性或嗜性。这项工作应用了一种强大的蛋白质工程新工具来构建新型病毒包膜变体,可极大地提高逆转录病毒和慢病毒载体用于临床基因治疗的安全性和实用性。此外,这种文库生成和筛选方法可以很容易地扩展到蛋白质工程中的其他挑战。

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