Lupold Shawn E, Kudrolli Tarana A, Chowdhury Wasim H, Wu Ping, Rodriguez Ronald
James Buchanan Brady Urology Institute, Johns Hopkins University School of Medicine, Broadway Research Building 467, 733N Broadway, Baltimore, MD 21205, USA.
Nucleic Acids Res. 2007;35(20):e138. doi: 10.1093/nar/gkm914. Epub 2007 Oct 26.
Capsid-displayed adenoviral peptide libraries have been a significant, yet unfeasible goal in biotechnology. Three barriers have made this difficult: the large size of the viral genome, the low efficiency of converting plasmid-based genomes into packaged adenovirus and the fact that library amplification is hampered by the ability of two (or more) virus to co-infect one cell. Here, we present a novel vector system, pFex, which is capable of overcoming all three barriers. With pFex, modified fiber genes are recombined into the natural genetic locus of adenovirus through unidirectional Cre-lox recombination. Modified-fiber genes can be directly shuttled into replicating viral genomes in mammalian cells. The 'acceptor' vector does not contain the fiber gene, and therefore does not propagate until it has received a 'donor' fiber gene. Therefore, This methodology overcomes the low efficiency of transfecting large viral genomes and bypasses the need for transition to functional virus. Thus, with a fiber-shuttle library, one can generate and evaluate large numbers of fiber-modified adenovirus simultaneously. Finally, successful fiber genes can be rescued from virus and recombined back into shuttle plasmids, avoiding the need to propagate mixed viral pools. For proof of principal, we use this new system to screen a capsid-displayed peptide library for retargeted viral infection.
衣壳展示腺病毒肽库一直是生物技术领域一个重要但难以实现的目标。有三个障碍使得这一目标难以达成:病毒基因组规模庞大、将基于质粒的基因组转化为包装好的腺病毒效率低下,以及两个(或更多)病毒共同感染一个细胞的能力会阻碍文库扩增。在此,我们提出一种新型载体系统pFex,它能够克服这三个障碍。利用pFex,通过单向Cre-lox重组将修饰后的纤维基因重组到腺病毒的天然基因位点。修饰后的纤维基因可直接导入哺乳动物细胞中正在复制的病毒基因组。“受体”载体不含纤维基因,因此在接收“供体”纤维基因之前不会繁殖。所以,这种方法克服了转染大型病毒基因组效率低下的问题,并且无需过渡到功能性病毒。因此,利用纤维穿梭文库,可以同时生成和评估大量纤维修饰的腺病毒。最后,成功的纤维基因可以从病毒中拯救出来并重新组合回穿梭质粒,避免了繁殖混合病毒库的需要。为了验证原理,我们使用这个新系统筛选衣壳展示肽库以实现病毒感染的重靶向。