Cargando…
Forkhead O Transcription Factor 4 Restricts HBV Covalently Closed Circular DNA Transcription and HBV Replication through Genetic Downregulation of Hepatocyte Nuclear Factor 4 Alpha and Epigenetic Suppression of Covalently Closed Circular DNA via Interacting with Promyelocytic Leukemia Protein
Nuclear located hepatitis B virus (HBV) covalently closed circular DNA (cccDNA) remains the key obstacle to cure chronic hepatitis B (CHB). In our previous investigation, it was found that FoxO4 could inhibit HBV core promoter activity through downregulating the expression of HNF4α. However, the exa...
Autores principales: | , , , , , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
American Society for Microbiology
2022
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9278149/ https://www.ncbi.nlm.nih.gov/pubmed/35695580 http://dx.doi.org/10.1128/jvi.00546-22 |
_version_ | 1784746137424494592 |
---|---|
author | Li, Yuqi He, Minjing Gong, Ruijie Wang, Ziteng Lu, Lin Peng, Shu Duan, Zhiyun Feng, Ying Liu, Yi Gao, Bo |
author_facet | Li, Yuqi He, Minjing Gong, Ruijie Wang, Ziteng Lu, Lin Peng, Shu Duan, Zhiyun Feng, Ying Liu, Yi Gao, Bo |
author_sort | Li, Yuqi |
collection | PubMed |
description | Nuclear located hepatitis B virus (HBV) covalently closed circular DNA (cccDNA) remains the key obstacle to cure chronic hepatitis B (CHB). In our previous investigation, it was found that FoxO4 could inhibit HBV core promoter activity through downregulating the expression of HNF4α. However, the exact mechanisms whereby FoxO4 inhibits HBV replication, especially its effect on cccDNA, remain unclear. Here, our data further revealed that FoxO4 could effectively inhibit cccDNA mediated transcription and HBV replication without affecting cccDNA level. Mechanistic study showed that FoxO4 could cause epigenetic suppression of cccDNA. Although FoxO4-mediated downregulation of HNF4α contributed to inhibiting HBV core promoter activity, it had little effect on cccDNA epigenetic regulation. Further, it was found that FoxO4 could colocalize within promyelocytic leukemia protein (PML) nuclear bodies and interact with PML. Of note, PML was revealed to be critical for FoxO4-mediated inhibition of cccDNA epigenetic modification and of the following cccDNA transcription and HBV replication. Furthermore, FoxO4 was found to be downregulated in HBV-infected hepatocytes and human liver tissues, and it was negatively correlated with cccDNA transcriptional activity in CHB patients. Together, these findings highlight the role of FoxO4 in suppressing cccDNA transcription and HBV replication via genetic downregulation of HNF4α and epigenetic suppression of cccDNA through interacting with PML. Targeting FoxO4 may present as a new therapeutic strategy against chronic HBV infection. IMPORTANCE HBV cccDNA is a determining factor for viral persistence and the main obstacle for a cure of chronic hepatitis B. Strategies that target cccDNA directly are therefore of great importance in controlling persistent HBV infection. In present investigation, we found that FoxO4 could efficiently suppress cccDNA transcription and HBV replication without affecting the level of cccDNA itself. Further, our data revealed that FoxO4 might inhibit cccDNA function via a two-part mechanism: one is to epigenetically suppress cccDNA transcription via interacting with PML, and the other is to inhibit HBV core promoter activity via the genetic downregulation of HNF4α. Of note, HBV might dampen the expression of FoxO4 for its own persistent infection. We propose that manipulation of FoxO4 may present as a potential therapeutic strategy against chronic HBV infection. |
format | Online Article Text |
id | pubmed-9278149 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2022 |
publisher | American Society for Microbiology |
record_format | MEDLINE/PubMed |
spelling | pubmed-92781492022-07-14 Forkhead O Transcription Factor 4 Restricts HBV Covalently Closed Circular DNA Transcription and HBV Replication through Genetic Downregulation of Hepatocyte Nuclear Factor 4 Alpha and Epigenetic Suppression of Covalently Closed Circular DNA via Interacting with Promyelocytic Leukemia Protein Li, Yuqi He, Minjing Gong, Ruijie Wang, Ziteng Lu, Lin Peng, Shu Duan, Zhiyun Feng, Ying Liu, Yi Gao, Bo J Virol Pathogenesis and Immunity Nuclear located hepatitis B virus (HBV) covalently closed circular DNA (cccDNA) remains the key obstacle to cure chronic hepatitis B (CHB). In our previous investigation, it was found that FoxO4 could inhibit HBV core promoter activity through downregulating the expression of HNF4α. However, the exact mechanisms whereby FoxO4 inhibits HBV replication, especially its effect on cccDNA, remain unclear. Here, our data further revealed that FoxO4 could effectively inhibit cccDNA mediated transcription and HBV replication without affecting cccDNA level. Mechanistic study showed that FoxO4 could cause epigenetic suppression of cccDNA. Although FoxO4-mediated downregulation of HNF4α contributed to inhibiting HBV core promoter activity, it had little effect on cccDNA epigenetic regulation. Further, it was found that FoxO4 could colocalize within promyelocytic leukemia protein (PML) nuclear bodies and interact with PML. Of note, PML was revealed to be critical for FoxO4-mediated inhibition of cccDNA epigenetic modification and of the following cccDNA transcription and HBV replication. Furthermore, FoxO4 was found to be downregulated in HBV-infected hepatocytes and human liver tissues, and it was negatively correlated with cccDNA transcriptional activity in CHB patients. Together, these findings highlight the role of FoxO4 in suppressing cccDNA transcription and HBV replication via genetic downregulation of HNF4α and epigenetic suppression of cccDNA through interacting with PML. Targeting FoxO4 may present as a new therapeutic strategy against chronic HBV infection. IMPORTANCE HBV cccDNA is a determining factor for viral persistence and the main obstacle for a cure of chronic hepatitis B. Strategies that target cccDNA directly are therefore of great importance in controlling persistent HBV infection. In present investigation, we found that FoxO4 could efficiently suppress cccDNA transcription and HBV replication without affecting the level of cccDNA itself. Further, our data revealed that FoxO4 might inhibit cccDNA function via a two-part mechanism: one is to epigenetically suppress cccDNA transcription via interacting with PML, and the other is to inhibit HBV core promoter activity via the genetic downregulation of HNF4α. Of note, HBV might dampen the expression of FoxO4 for its own persistent infection. We propose that manipulation of FoxO4 may present as a potential therapeutic strategy against chronic HBV infection. American Society for Microbiology 2022-06-13 /pmc/articles/PMC9278149/ /pubmed/35695580 http://dx.doi.org/10.1128/jvi.00546-22 Text en Copyright © 2022 Li et al. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution 4.0 International license (https://creativecommons.org/licenses/by/4.0/) . |
spellingShingle | Pathogenesis and Immunity Li, Yuqi He, Minjing Gong, Ruijie Wang, Ziteng Lu, Lin Peng, Shu Duan, Zhiyun Feng, Ying Liu, Yi Gao, Bo Forkhead O Transcription Factor 4 Restricts HBV Covalently Closed Circular DNA Transcription and HBV Replication through Genetic Downregulation of Hepatocyte Nuclear Factor 4 Alpha and Epigenetic Suppression of Covalently Closed Circular DNA via Interacting with Promyelocytic Leukemia Protein |
title | Forkhead O Transcription Factor 4 Restricts HBV Covalently Closed Circular DNA Transcription and HBV Replication through Genetic Downregulation of Hepatocyte Nuclear Factor 4 Alpha and Epigenetic Suppression of Covalently Closed Circular DNA via Interacting with Promyelocytic Leukemia Protein |
title_full | Forkhead O Transcription Factor 4 Restricts HBV Covalently Closed Circular DNA Transcription and HBV Replication through Genetic Downregulation of Hepatocyte Nuclear Factor 4 Alpha and Epigenetic Suppression of Covalently Closed Circular DNA via Interacting with Promyelocytic Leukemia Protein |
title_fullStr | Forkhead O Transcription Factor 4 Restricts HBV Covalently Closed Circular DNA Transcription and HBV Replication through Genetic Downregulation of Hepatocyte Nuclear Factor 4 Alpha and Epigenetic Suppression of Covalently Closed Circular DNA via Interacting with Promyelocytic Leukemia Protein |
title_full_unstemmed | Forkhead O Transcription Factor 4 Restricts HBV Covalently Closed Circular DNA Transcription and HBV Replication through Genetic Downregulation of Hepatocyte Nuclear Factor 4 Alpha and Epigenetic Suppression of Covalently Closed Circular DNA via Interacting with Promyelocytic Leukemia Protein |
title_short | Forkhead O Transcription Factor 4 Restricts HBV Covalently Closed Circular DNA Transcription and HBV Replication through Genetic Downregulation of Hepatocyte Nuclear Factor 4 Alpha and Epigenetic Suppression of Covalently Closed Circular DNA via Interacting with Promyelocytic Leukemia Protein |
title_sort | forkhead o transcription factor 4 restricts hbv covalently closed circular dna transcription and hbv replication through genetic downregulation of hepatocyte nuclear factor 4 alpha and epigenetic suppression of covalently closed circular dna via interacting with promyelocytic leukemia protein |
topic | Pathogenesis and Immunity |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9278149/ https://www.ncbi.nlm.nih.gov/pubmed/35695580 http://dx.doi.org/10.1128/jvi.00546-22 |
work_keys_str_mv | AT liyuqi forkheadotranscriptionfactor4restrictshbvcovalentlyclosedcirculardnatranscriptionandhbvreplicationthroughgeneticdownregulationofhepatocytenuclearfactor4alphaandepigeneticsuppressionofcovalentlyclosedcirculardnaviainteractingwithpromyelocyticleukemiaprotei AT heminjing forkheadotranscriptionfactor4restrictshbvcovalentlyclosedcirculardnatranscriptionandhbvreplicationthroughgeneticdownregulationofhepatocytenuclearfactor4alphaandepigeneticsuppressionofcovalentlyclosedcirculardnaviainteractingwithpromyelocyticleukemiaprotei AT gongruijie forkheadotranscriptionfactor4restrictshbvcovalentlyclosedcirculardnatranscriptionandhbvreplicationthroughgeneticdownregulationofhepatocytenuclearfactor4alphaandepigeneticsuppressionofcovalentlyclosedcirculardnaviainteractingwithpromyelocyticleukemiaprotei AT wangziteng forkheadotranscriptionfactor4restrictshbvcovalentlyclosedcirculardnatranscriptionandhbvreplicationthroughgeneticdownregulationofhepatocytenuclearfactor4alphaandepigeneticsuppressionofcovalentlyclosedcirculardnaviainteractingwithpromyelocyticleukemiaprotei AT lulin forkheadotranscriptionfactor4restrictshbvcovalentlyclosedcirculardnatranscriptionandhbvreplicationthroughgeneticdownregulationofhepatocytenuclearfactor4alphaandepigeneticsuppressionofcovalentlyclosedcirculardnaviainteractingwithpromyelocyticleukemiaprotei AT pengshu forkheadotranscriptionfactor4restrictshbvcovalentlyclosedcirculardnatranscriptionandhbvreplicationthroughgeneticdownregulationofhepatocytenuclearfactor4alphaandepigeneticsuppressionofcovalentlyclosedcirculardnaviainteractingwithpromyelocyticleukemiaprotei AT duanzhiyun forkheadotranscriptionfactor4restrictshbvcovalentlyclosedcirculardnatranscriptionandhbvreplicationthroughgeneticdownregulationofhepatocytenuclearfactor4alphaandepigeneticsuppressionofcovalentlyclosedcirculardnaviainteractingwithpromyelocyticleukemiaprotei AT fengying forkheadotranscriptionfactor4restrictshbvcovalentlyclosedcirculardnatranscriptionandhbvreplicationthroughgeneticdownregulationofhepatocytenuclearfactor4alphaandepigeneticsuppressionofcovalentlyclosedcirculardnaviainteractingwithpromyelocyticleukemiaprotei AT liuyi forkheadotranscriptionfactor4restrictshbvcovalentlyclosedcirculardnatranscriptionandhbvreplicationthroughgeneticdownregulationofhepatocytenuclearfactor4alphaandepigeneticsuppressionofcovalentlyclosedcirculardnaviainteractingwithpromyelocyticleukemiaprotei AT gaobo forkheadotranscriptionfactor4restrictshbvcovalentlyclosedcirculardnatranscriptionandhbvreplicationthroughgeneticdownregulationofhepatocytenuclearfactor4alphaandepigeneticsuppressionofcovalentlyclosedcirculardnaviainteractingwithpromyelocyticleukemiaprotei |