| Literature DB >> 27091097 |
Yong Wu1, Tian-Ying Zhang2, Lin-Lin Fang1, Zi-Xuan Chen3, Liu-Wei Song2, Jia-Li Cao2, Lin Yang1, Quan Yuan4, Ning-Shao Xia1.
Abstract
The stable HBV-replicating cell lines, which carry replication-competent HBV genome stably integrated into the genome of host cell, are widely used to evaluate the effects of antiviral agents. However, current methods to generate HBV-replicating cell lines, which are mostly dependent on random integration of foreign DNA via plasmid transfection, are less-efficient and time-consuming. To address this issue, we constructed an all-in-one Sleeping Beauty transposon system (denoted pTSMP-HBV vector) for robust generation of stable cell lines carrying replication-competent HBV genome of different genotype. This vector contains a Sleeping Beauty transposon containing HBV 1.3-copy genome with an expression cassette of the SV40 promoter driving red fluorescent protein (mCherry) and self-cleaving P2A peptide linked puromycin resistance gene (PuroR). In addition, a PGK promoter-driven SB100X hyperactive transposase cassette is placed in the outside of the transposon in the same plasmid.The HBV-replicating stable cells could be obtained from pTSMP-HBV transfected HepG2 cells by red fluorescence-activated cell sorting and puromycin resistant cell selection within 4-week. Using this system, we successfully constructed four cell lines carrying replication-competent HBV genome of genotypes A-D. The replication and viral protein expression profiles of these cells were systematically characterized. In conclusion, our study provides a high-efficiency strategy to generate HBV-replicating stable cell lines, which may facilitate HBV-related virological study.Entities:
Keywords: Hepatitis B virus; Sleeping Beauty transposon; Stable cell line
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Year: 2016 PMID: 27091097 DOI: 10.1016/j.jviromet.2016.04.010
Source DB: PubMed Journal: J Virol Methods ISSN: 0166-0934 Impact factor: 2.014