Small Molecular Inhibitors of DNA Double Strand Break Repair Pathways Increase the ANTI-HBV Activity of CRISPR/Cas9
A P Kostyusheva
1
,
D S Kostyushev
1
,
S A Brezgin
1, 2
,
D N Zarifyan
1
,
E V Volchkova
3
,
V P Chulanov
1, 3
Publication type: Journal Article
Publication date: 2019-03-01
scimago Q3
wos Q4
SJR: 0.331
CiteScore: 1.6
Impact factor: 1.2
ISSN: 00268933, 16083245, 21689547
Structural Biology
Biophysics
Abstract
The CRISPR/Cas9 nuclease system can effectively suppress the replication of the hepatitis B virus (HBV), while covalently closed circular DNA (cccDNA), a highly resistant form of the virus, persists in the nuclei of infected cells. The most common outcome of DNA double-strand breaks (DSBs) in cccDNA caused by CRISPR/Cas9 is double-strand break repair by nonhomologous end-joining, which results in insertion/deletion mutations. Modulation of the DNA double-strand break repair pathways by small molecules was shown to stimulate CRISPR/Cas9 activity and may potentially be utilized to enhance the elimination of HBV cccDNA. In this work, we used inhibitors of homologous (RI-1) and nonhomologous (NU7026) end-joining and their combination to stimulate antiviral activity of CRISPR/Cas9 on two cell models of HBV in vitro, i.e., the HepG2-1.1merHBV cells containing the HBV genome under the tet-on regulated cytomegalovirus promoter and the HepG2-1.5merHBV cells containing constitutive expression of HBV RNA under the wild-type promoter. The treatment of the cells with RI-1 or NU7026 after lentiviral transduction of CRISPR/Cas9 drops the levels of cccDNA compared to the DMSO-treated control. RI-1 and NU7026 resulted in 5.0–6.5 times more significant reduction in the HBV cccDNA level compared to the mock-control. In conclusion, the inhibition of both homologous and nonhomologous DNA double-strand break repair pathways increases the elimination of HBV cccDNA by CRISPR/Cas9 system in vitro, which may potentially be utilized as a therapeutic approach to treat chronic hepatitis B.
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Kostyusheva A. P. et al. Small Molecular Inhibitors of DNA Double Strand Break Repair Pathways Increase the ANTI-HBV Activity of CRISPR/Cas9 // Molecular Biology. 2019. Vol. 53. No. 2. pp. 274-285.
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Kostyusheva A. P., Kostyushev D. S., Brezgin S. A., Zarifyan D. N., Volchkova E. V., Chulanov V. P. Small Molecular Inhibitors of DNA Double Strand Break Repair Pathways Increase the ANTI-HBV Activity of CRISPR/Cas9 // Molecular Biology. 2019. Vol. 53. No. 2. pp. 274-285.
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RIS
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TY - JOUR
DO - 10.1134/S0026893319010072
UR - https://doi.org/10.1134/S0026893319010072
TI - Small Molecular Inhibitors of DNA Double Strand Break Repair Pathways Increase the ANTI-HBV Activity of CRISPR/Cas9
T2 - Molecular Biology
AU - Kostyusheva, A P
AU - Kostyushev, D S
AU - Brezgin, S A
AU - Zarifyan, D N
AU - Volchkova, E V
AU - Chulanov, V P
PY - 2019
DA - 2019/03/01
PB - Pleiades Publishing
SP - 274-285
IS - 2
VL - 53
SN - 0026-8933
SN - 1608-3245
SN - 2168-9547
ER -
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@article{2019_Kostyusheva,
author = {A P Kostyusheva and D S Kostyushev and S A Brezgin and D N Zarifyan and E V Volchkova and V P Chulanov},
title = {Small Molecular Inhibitors of DNA Double Strand Break Repair Pathways Increase the ANTI-HBV Activity of CRISPR/Cas9},
journal = {Molecular Biology},
year = {2019},
volume = {53},
publisher = {Pleiades Publishing},
month = {mar},
url = {https://doi.org/10.1134/S0026893319010072},
number = {2},
pages = {274--285},
doi = {10.1134/S0026893319010072}
}
Cite this
MLA
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Kostyusheva, A. P., et al. “Small Molecular Inhibitors of DNA Double Strand Break Repair Pathways Increase the ANTI-HBV Activity of CRISPR/Cas9.” Molecular Biology, vol. 53, no. 2, Mar. 2019, pp. 274-285. https://doi.org/10.1134/S0026893319010072.