Cargando…

A single hepatitis B virus genome with a reporter allows the entire viral life cycle to be monitored in primary human hepatocytes

For the development of antiviral agents to eliminate hepatitis B virus (HBV), it is essential to establish an HBV cell culture system that can easily monitor HBV infection. Here, we created a novel HBV infection monitoring system using a luminescent 11‐amino acid reporter, the high‐affinity subunit...

Descripción completa

Detalles Bibliográficos
Autores principales: Sumiyadorj, Ariunaa, Murai, Kazuhisa, Shimakami, Tetsuro, Kuroki, Kazuyuki, Nishikawa, Tomoki, Kakuya, Masaki, Yamada, Atsumu, Wang, Ying, Ishida, Atsuya, Shirasaki, Takayoshi, Kawase, Shotaro, Li, Ying‐Yi, Okada, Hikari, Nio, Kouki, Kawaguchi, Kazunori, Yamashita, Taro, Sakai, Yoshio, Duger, Davaadorj, Mizukoshi, Eishiro, Honda, Masao, Kaneko, Shuichi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9426382/
https://www.ncbi.nlm.nih.gov/pubmed/35691027
http://dx.doi.org/10.1002/hep4.2018
_version_ 1784778666630184960
author Sumiyadorj, Ariunaa
Murai, Kazuhisa
Shimakami, Tetsuro
Kuroki, Kazuyuki
Nishikawa, Tomoki
Kakuya, Masaki
Yamada, Atsumu
Wang, Ying
Ishida, Atsuya
Shirasaki, Takayoshi
Kawase, Shotaro
Li, Ying‐Yi
Okada, Hikari
Nio, Kouki
Kawaguchi, Kazunori
Yamashita, Taro
Sakai, Yoshio
Duger, Davaadorj
Mizukoshi, Eishiro
Honda, Masao
Kaneko, Shuichi
author_facet Sumiyadorj, Ariunaa
Murai, Kazuhisa
Shimakami, Tetsuro
Kuroki, Kazuyuki
Nishikawa, Tomoki
Kakuya, Masaki
Yamada, Atsumu
Wang, Ying
Ishida, Atsuya
Shirasaki, Takayoshi
Kawase, Shotaro
Li, Ying‐Yi
Okada, Hikari
Nio, Kouki
Kawaguchi, Kazunori
Yamashita, Taro
Sakai, Yoshio
Duger, Davaadorj
Mizukoshi, Eishiro
Honda, Masao
Kaneko, Shuichi
author_sort Sumiyadorj, Ariunaa
collection PubMed
description For the development of antiviral agents to eliminate hepatitis B virus (HBV), it is essential to establish an HBV cell culture system that can easily monitor HBV infection. Here, we created a novel HBV infection monitoring system using a luminescent 11‐amino acid reporter, the high‐affinity subunit of nano‐luciferase binary technology (HiBiT). The HiBiT‐coding sequence was inserted at the N‐terminus of preS1 in a 1.2‐fold plasmid encoding a genotype C HBV genome. After transfection of HepG2 cells with this HiBiT‐containing plasmid, the supernatant was used to prepare a recombinant cell culture‐derived virus (HiBiT‐HBVcc). Primary human hepatocytes (PXB) were inoculated with HiBiT‐HBVcc. Following inoculation, intracellular and extracellular HiBiT activity and the levels of various HBV markers were determined. Reinfection of naive PXB cells with HiBiT‐HBVcc prepared from HiBiT‐HBVcc‐infected PXB cells was analyzed. When PXB cells were infected with HiBiT‐HBVcc at several titers, extracellular HiBiT activity was detected in a viral titer‐dependent manner and was correlated with intracellular HiBiT activity. Inhibitors of HBV entry or replication suppressed extracellular HiBiT activity. Viral DNA, RNA, and proteins were detectable, including covalently closed circular DNA, by Southern blot analysis. The synthesis of relaxed‐circular DNA from single‐stranded DNA in HiBiT‐HBV decreased to one third of that of wild‐type HBV, and the infectivity of HiBiT‐HBVcc decreased to one tenth of that of wild‐type HBVcc. HiBiT‐HBVcc prepared from PXB cells harboring HiBiT‐HBV was able to infect naive PXB cells. Conclusions: Recombinant HiBiT‐HBV can undergo the entire viral life cycle, thus facilitating high‐throughput screening for HBV infection in vitro using supernatants. This system will be a powerful tool for developing antiviral agents.
format Online
Article
Text
id pubmed-9426382
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher John Wiley and Sons Inc.
record_format MEDLINE/PubMed
spelling pubmed-94263822022-08-31 A single hepatitis B virus genome with a reporter allows the entire viral life cycle to be monitored in primary human hepatocytes Sumiyadorj, Ariunaa Murai, Kazuhisa Shimakami, Tetsuro Kuroki, Kazuyuki Nishikawa, Tomoki Kakuya, Masaki Yamada, Atsumu Wang, Ying Ishida, Atsuya Shirasaki, Takayoshi Kawase, Shotaro Li, Ying‐Yi Okada, Hikari Nio, Kouki Kawaguchi, Kazunori Yamashita, Taro Sakai, Yoshio Duger, Davaadorj Mizukoshi, Eishiro Honda, Masao Kaneko, Shuichi Hepatol Commun Original Articles For the development of antiviral agents to eliminate hepatitis B virus (HBV), it is essential to establish an HBV cell culture system that can easily monitor HBV infection. Here, we created a novel HBV infection monitoring system using a luminescent 11‐amino acid reporter, the high‐affinity subunit of nano‐luciferase binary technology (HiBiT). The HiBiT‐coding sequence was inserted at the N‐terminus of preS1 in a 1.2‐fold plasmid encoding a genotype C HBV genome. After transfection of HepG2 cells with this HiBiT‐containing plasmid, the supernatant was used to prepare a recombinant cell culture‐derived virus (HiBiT‐HBVcc). Primary human hepatocytes (PXB) were inoculated with HiBiT‐HBVcc. Following inoculation, intracellular and extracellular HiBiT activity and the levels of various HBV markers were determined. Reinfection of naive PXB cells with HiBiT‐HBVcc prepared from HiBiT‐HBVcc‐infected PXB cells was analyzed. When PXB cells were infected with HiBiT‐HBVcc at several titers, extracellular HiBiT activity was detected in a viral titer‐dependent manner and was correlated with intracellular HiBiT activity. Inhibitors of HBV entry or replication suppressed extracellular HiBiT activity. Viral DNA, RNA, and proteins were detectable, including covalently closed circular DNA, by Southern blot analysis. The synthesis of relaxed‐circular DNA from single‐stranded DNA in HiBiT‐HBV decreased to one third of that of wild‐type HBV, and the infectivity of HiBiT‐HBVcc decreased to one tenth of that of wild‐type HBVcc. HiBiT‐HBVcc prepared from PXB cells harboring HiBiT‐HBV was able to infect naive PXB cells. Conclusions: Recombinant HiBiT‐HBV can undergo the entire viral life cycle, thus facilitating high‐throughput screening for HBV infection in vitro using supernatants. This system will be a powerful tool for developing antiviral agents. John Wiley and Sons Inc. 2022-06-12 /pmc/articles/PMC9426382/ /pubmed/35691027 http://dx.doi.org/10.1002/hep4.2018 Text en © 2022 The Authors. Hepatology Communications published by Wiley Periodicals LLC on behalf of American Association for the Study of Liver Diseases. https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by-nc-nd/4.0/ (https://creativecommons.org/licenses/by-nc-nd/4.0/) License, which permits use and distribution in any medium, provided the original work is properly cited, the use is non‐commercial and no modifications or adaptations are made.
spellingShingle Original Articles
Sumiyadorj, Ariunaa
Murai, Kazuhisa
Shimakami, Tetsuro
Kuroki, Kazuyuki
Nishikawa, Tomoki
Kakuya, Masaki
Yamada, Atsumu
Wang, Ying
Ishida, Atsuya
Shirasaki, Takayoshi
Kawase, Shotaro
Li, Ying‐Yi
Okada, Hikari
Nio, Kouki
Kawaguchi, Kazunori
Yamashita, Taro
Sakai, Yoshio
Duger, Davaadorj
Mizukoshi, Eishiro
Honda, Masao
Kaneko, Shuichi
A single hepatitis B virus genome with a reporter allows the entire viral life cycle to be monitored in primary human hepatocytes
title A single hepatitis B virus genome with a reporter allows the entire viral life cycle to be monitored in primary human hepatocytes
title_full A single hepatitis B virus genome with a reporter allows the entire viral life cycle to be monitored in primary human hepatocytes
title_fullStr A single hepatitis B virus genome with a reporter allows the entire viral life cycle to be monitored in primary human hepatocytes
title_full_unstemmed A single hepatitis B virus genome with a reporter allows the entire viral life cycle to be monitored in primary human hepatocytes
title_short A single hepatitis B virus genome with a reporter allows the entire viral life cycle to be monitored in primary human hepatocytes
title_sort single hepatitis b virus genome with a reporter allows the entire viral life cycle to be monitored in primary human hepatocytes
topic Original Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9426382/
https://www.ncbi.nlm.nih.gov/pubmed/35691027
http://dx.doi.org/10.1002/hep4.2018
work_keys_str_mv AT sumiyadorjariunaa asinglehepatitisbvirusgenomewithareporterallowstheentirevirallifecycletobemonitoredinprimaryhumanhepatocytes
AT muraikazuhisa asinglehepatitisbvirusgenomewithareporterallowstheentirevirallifecycletobemonitoredinprimaryhumanhepatocytes
AT shimakamitetsuro asinglehepatitisbvirusgenomewithareporterallowstheentirevirallifecycletobemonitoredinprimaryhumanhepatocytes
AT kurokikazuyuki asinglehepatitisbvirusgenomewithareporterallowstheentirevirallifecycletobemonitoredinprimaryhumanhepatocytes
AT nishikawatomoki asinglehepatitisbvirusgenomewithareporterallowstheentirevirallifecycletobemonitoredinprimaryhumanhepatocytes
AT kakuyamasaki asinglehepatitisbvirusgenomewithareporterallowstheentirevirallifecycletobemonitoredinprimaryhumanhepatocytes
AT yamadaatsumu asinglehepatitisbvirusgenomewithareporterallowstheentirevirallifecycletobemonitoredinprimaryhumanhepatocytes
AT wangying asinglehepatitisbvirusgenomewithareporterallowstheentirevirallifecycletobemonitoredinprimaryhumanhepatocytes
AT ishidaatsuya asinglehepatitisbvirusgenomewithareporterallowstheentirevirallifecycletobemonitoredinprimaryhumanhepatocytes
AT shirasakitakayoshi asinglehepatitisbvirusgenomewithareporterallowstheentirevirallifecycletobemonitoredinprimaryhumanhepatocytes
AT kawaseshotaro asinglehepatitisbvirusgenomewithareporterallowstheentirevirallifecycletobemonitoredinprimaryhumanhepatocytes
AT liyingyi asinglehepatitisbvirusgenomewithareporterallowstheentirevirallifecycletobemonitoredinprimaryhumanhepatocytes
AT okadahikari asinglehepatitisbvirusgenomewithareporterallowstheentirevirallifecycletobemonitoredinprimaryhumanhepatocytes
AT niokouki asinglehepatitisbvirusgenomewithareporterallowstheentirevirallifecycletobemonitoredinprimaryhumanhepatocytes
AT kawaguchikazunori asinglehepatitisbvirusgenomewithareporterallowstheentirevirallifecycletobemonitoredinprimaryhumanhepatocytes
AT yamashitataro asinglehepatitisbvirusgenomewithareporterallowstheentirevirallifecycletobemonitoredinprimaryhumanhepatocytes
AT sakaiyoshio asinglehepatitisbvirusgenomewithareporterallowstheentirevirallifecycletobemonitoredinprimaryhumanhepatocytes
AT dugerdavaadorj asinglehepatitisbvirusgenomewithareporterallowstheentirevirallifecycletobemonitoredinprimaryhumanhepatocytes
AT mizukoshieishiro asinglehepatitisbvirusgenomewithareporterallowstheentirevirallifecycletobemonitoredinprimaryhumanhepatocytes
AT hondamasao asinglehepatitisbvirusgenomewithareporterallowstheentirevirallifecycletobemonitoredinprimaryhumanhepatocytes
AT kanekoshuichi asinglehepatitisbvirusgenomewithareporterallowstheentirevirallifecycletobemonitoredinprimaryhumanhepatocytes
AT sumiyadorjariunaa singlehepatitisbvirusgenomewithareporterallowstheentirevirallifecycletobemonitoredinprimaryhumanhepatocytes
AT muraikazuhisa singlehepatitisbvirusgenomewithareporterallowstheentirevirallifecycletobemonitoredinprimaryhumanhepatocytes
AT shimakamitetsuro singlehepatitisbvirusgenomewithareporterallowstheentirevirallifecycletobemonitoredinprimaryhumanhepatocytes
AT kurokikazuyuki singlehepatitisbvirusgenomewithareporterallowstheentirevirallifecycletobemonitoredinprimaryhumanhepatocytes
AT nishikawatomoki singlehepatitisbvirusgenomewithareporterallowstheentirevirallifecycletobemonitoredinprimaryhumanhepatocytes
AT kakuyamasaki singlehepatitisbvirusgenomewithareporterallowstheentirevirallifecycletobemonitoredinprimaryhumanhepatocytes
AT yamadaatsumu singlehepatitisbvirusgenomewithareporterallowstheentirevirallifecycletobemonitoredinprimaryhumanhepatocytes
AT wangying singlehepatitisbvirusgenomewithareporterallowstheentirevirallifecycletobemonitoredinprimaryhumanhepatocytes
AT ishidaatsuya singlehepatitisbvirusgenomewithareporterallowstheentirevirallifecycletobemonitoredinprimaryhumanhepatocytes
AT shirasakitakayoshi singlehepatitisbvirusgenomewithareporterallowstheentirevirallifecycletobemonitoredinprimaryhumanhepatocytes
AT kawaseshotaro singlehepatitisbvirusgenomewithareporterallowstheentirevirallifecycletobemonitoredinprimaryhumanhepatocytes
AT liyingyi singlehepatitisbvirusgenomewithareporterallowstheentirevirallifecycletobemonitoredinprimaryhumanhepatocytes
AT okadahikari singlehepatitisbvirusgenomewithareporterallowstheentirevirallifecycletobemonitoredinprimaryhumanhepatocytes
AT niokouki singlehepatitisbvirusgenomewithareporterallowstheentirevirallifecycletobemonitoredinprimaryhumanhepatocytes
AT kawaguchikazunori singlehepatitisbvirusgenomewithareporterallowstheentirevirallifecycletobemonitoredinprimaryhumanhepatocytes
AT yamashitataro singlehepatitisbvirusgenomewithareporterallowstheentirevirallifecycletobemonitoredinprimaryhumanhepatocytes
AT sakaiyoshio singlehepatitisbvirusgenomewithareporterallowstheentirevirallifecycletobemonitoredinprimaryhumanhepatocytes
AT dugerdavaadorj singlehepatitisbvirusgenomewithareporterallowstheentirevirallifecycletobemonitoredinprimaryhumanhepatocytes
AT mizukoshieishiro singlehepatitisbvirusgenomewithareporterallowstheentirevirallifecycletobemonitoredinprimaryhumanhepatocytes
AT hondamasao singlehepatitisbvirusgenomewithareporterallowstheentirevirallifecycletobemonitoredinprimaryhumanhepatocytes
AT kanekoshuichi singlehepatitisbvirusgenomewithareporterallowstheentirevirallifecycletobemonitoredinprimaryhumanhepatocytes