| Literature DB >> 31751597 |
Xiaojuan Guo1, Lingling Mei2, Bingyu Yan3, Xiaohui Zou1, Tao Hung1, Zhuozhuang Lu4.
Abstract
Commonly used and well accepted approaches are lacking for site-directed modification of adenoviral vectors. Here, we attempt to introduce an easy-to-implement strategy for such purpose with an example of establishing a replication competent adenoviral vector system from pKAd5 plasmid, an infectious clone of human adenovirus 5 (HAdV-5). PCR products of GFP expression cassette and plasmid backbone were fused with the EcoRI/NdeI-digested fragment of pKAd5 to generate a modified intermediate plasmid pMDXE3GA by DNA assembly. NdeI-digested fragment of pMDXE3GA was brought back to pKAd5 to form the adenoviral plasmid pKAd5XE3GA by restriction-ligation cloning. Recombinant adenovirus HAdV5-XE3GA was rescued, amplified and purified. The expression of GFP and the propagation of virus in adherent HEp-2 and suspension K562 cells were investigated. Expression of target gene was significantly enhanced in both cell lines infected with HAdV5-XE3GA due to virus replication. However, propagation of virus could not sustain in culture of K562 cells. Shuttle plasmid pSh5RC-GFP was constructed to facilitate exchange of transgene. In summary, the strategy of combined DNA assembly and restriction-ligation cloning is functional, cost-effective and suitable for genetic modification of adenovirus.Entities:
Keywords: Adenoviral vector; Gibson assembly; Replication competent; Restriction-ligation cloning; Site-directed mutagenesis
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Year: 2019 PMID: 31751597 DOI: 10.1016/j.jbiotec.2019.11.009
Source DB: PubMed Journal: J Biotechnol ISSN: 0168-1656 Impact factor: 3.307