Skip to main content
Journal cover image

A hepatitis B virus transgenic mouse model with a conditional, recombinant, episomal genome.

Journal articles  - Journal Article
Kruse, RL; Barzi, M; Legras, X; Pankowicz, FP; Furey, N; Liao, L; Xu, J; Bissig-Choisat, B; Slagle, BL; Bissig, K-D
Published in: JHEP Rep
April 2021

BACKGROUND & AIMS: Development of new and more effective therapies against hepatitis B virus (HBV) is limited by the lack of suitable small animal models. The HBV transgenic mouse model containing an integrated overlength 1.3-mer construct has yielded crucial insights, but this model unfortunately lacks covalently closed circular DNA (cccDNA), the episomal HBV transcriptional template, and cannot be cured given that HBV is integrated in every cell. METHODS: To solve these 2 problems, we generated a novel transgenic mouse (HBV1.1X), which generates an excisable circular HBV genome using Cre/LoxP technology. This model possesses a HBV1.1-mer cassette knocked into the ROSA26 locus and is designed for stable expression of viral proteins from birth, like the current HBV transgenic mouse model, before genomic excision with the introduction of Cre recombinase. RESULTS: We demonstrated induction of recombinant cccDNA (rcccDNA) formation via viral or transgenic Cre expression in HBV1.1X mice, and the ability to regulate HBsAg and HBc expression with Cre in mice. Tamoxifen-inducible Cre could markedly downregulate baseline HBsAg levels from the integrated HBV genome. To demonstrate clearance of HBV from HBV1.1X mice, we administered adenovirus expressing Cre, which permanently and significantly reduced HBsAg and core antigen levels in the murine liver via rcccDNA excision and a subsequent immune response. CONCLUSIONS: The HBV1.1X model is the first Cre-regulatable HBV transgenic mouse model and should be of value to mimic chronic HBV infection, with neonatal expression and tolerance of HBV antigens, and on-demand modulation of HBV expression. LAY SUMMARY: Hepatitis B virus (HBV) can only naturally infect humans and chimpanzees. Mouse models have been developed with the HBV genome integrated into mouse chromosomes, but this prevents mice from being cured. We developed a new transgenic mouse model that allows for HBV to be excised from mouse chromosomes to form a recombinant circular DNA molecule resembling the natural circular HBV genome. HBV expression could be reduced in these mice, enabling curative therapies to be tested in this new mouse model.

Duke Scholars

Altmetric Attention Stats
Dimensions Citation Stats

Published In

JHEP Rep

DOI

EISSN

2589-5559

Publication Date

April 2021

Volume

3

Issue

2

Start / End Page

100252

Location

Netherlands

Related Subject Headings

  • 3202 Clinical sciences
 

Citation

APA
Chicago
ICMJE
MLA
NLM
Kruse, R. L., Barzi, M., Legras, X., Pankowicz, F. P., Furey, N., Liao, L., … Bissig, K.-D. (2021). A hepatitis B virus transgenic mouse model with a conditional, recombinant, episomal genome. JHEP Rep, 3(2), 100252. https://doi.org/10.1016/j.jhepr.2021.100252
Kruse, Robert L., Mercedes Barzi, Xavier Legras, Francis P. Pankowicz, Nika Furey, Lan Liao, Janming Xu, Beatrice Bissig-Choisat, Betty L. Slagle, and Karl-Dimiter Bissig. “A hepatitis B virus transgenic mouse model with a conditional, recombinant, episomal genome.JHEP Rep 3, no. 2 (April 2021): 100252. https://doi.org/10.1016/j.jhepr.2021.100252.
Kruse RL, Barzi M, Legras X, Pankowicz FP, Furey N, Liao L, et al. A hepatitis B virus transgenic mouse model with a conditional, recombinant, episomal genome. JHEP Rep. 2021 Apr;3(2):100252.
Kruse, Robert L., et al. “A hepatitis B virus transgenic mouse model with a conditional, recombinant, episomal genome.JHEP Rep, vol. 3, no. 2, Apr. 2021, p. 100252. Pubmed, doi:10.1016/j.jhepr.2021.100252.
Kruse RL, Barzi M, Legras X, Pankowicz FP, Furey N, Liao L, Xu J, Bissig-Choisat B, Slagle BL, Bissig K-D. A hepatitis B virus transgenic mouse model with a conditional, recombinant, episomal genome. JHEP Rep. 2021 Apr;3(2):100252.
Journal cover image

Published In

JHEP Rep

DOI

EISSN

2589-5559

Publication Date

April 2021

Volume

3

Issue

2

Start / End Page

100252

Location

Netherlands

Related Subject Headings

  • 3202 Clinical sciences