Cargando…

HBV core protein allosteric modulators differentially alter cccDNA biosynthesis from de novo infection and intracellular amplification pathways

Hepatitis B virus (HBV) core protein assembles viral pre-genomic (pg) RNA and DNA polymerase into nucleocapsids for reverse transcriptional DNA replication to take place. Several chemotypes of small molecules, including heteroaryldihydropyrimidines (HAPs) and sulfamoylbenzamides (SBAs), have been di...

Descripción completa

Detalles Bibliográficos
Autores principales: Guo, Fang, Zhao, Qiong, Sheraz, Muhammad, Cheng, Junjun, Qi, Yonghe, Su, Qing, Cuconati, Andrea, Wei, Lai, Du, Yanming, Li, Wenhui, Chang, Jinhong, Guo, Ju-Tao
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5629035/
https://www.ncbi.nlm.nih.gov/pubmed/28945802
http://dx.doi.org/10.1371/journal.ppat.1006658
_version_ 1783268988934946816
author Guo, Fang
Zhao, Qiong
Sheraz, Muhammad
Cheng, Junjun
Qi, Yonghe
Su, Qing
Cuconati, Andrea
Wei, Lai
Du, Yanming
Li, Wenhui
Chang, Jinhong
Guo, Ju-Tao
author_facet Guo, Fang
Zhao, Qiong
Sheraz, Muhammad
Cheng, Junjun
Qi, Yonghe
Su, Qing
Cuconati, Andrea
Wei, Lai
Du, Yanming
Li, Wenhui
Chang, Jinhong
Guo, Ju-Tao
author_sort Guo, Fang
collection PubMed
description Hepatitis B virus (HBV) core protein assembles viral pre-genomic (pg) RNA and DNA polymerase into nucleocapsids for reverse transcriptional DNA replication to take place. Several chemotypes of small molecules, including heteroaryldihydropyrimidines (HAPs) and sulfamoylbenzamides (SBAs), have been discovered to allosterically modulate core protein structure and consequentially alter the kinetics and pathway of core protein assembly, resulting in formation of irregularly-shaped core protein aggregates or “empty” capsids devoid of pre-genomic RNA and viral DNA polymerase. Interestingly, in addition to inhibiting nucleocapsid assembly and subsequent viral genome replication, we have now demonstrated that HAPs and SBAs differentially modulate the biosynthesis of covalently closed circular (ccc) DNA from de novo infection and intracellular amplification pathways by inducing disassembly of nucleocapsids derived from virions as well as double-stranded DNA-containing progeny nucleocapsids in the cytoplasm. Specifically, the mistimed cuing of nucleocapsid uncoating prevents cccDNA formation during de novo infection of hepatocytes, while transiently accelerating cccDNA synthesis from cytoplasmic progeny nucleocapsids. Our studies indicate that elongation of positive-stranded DNA induces structural changes of nucleocapsids, which confers ability of mature nucleocapsids to bind CpAMs and triggers its disassembly. Understanding the molecular mechanism underlying the dual effects of the core protein allosteric modulators on nucleocapsid assembly and disassembly will facilitate the discovery of novel core protein-targeting antiviral agents that can more efficiently suppress cccDNA synthesis and cure chronic hepatitis B.
format Online
Article
Text
id pubmed-5629035
institution National Center for Biotechnology Information
language English
publishDate 2017
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-56290352017-10-20 HBV core protein allosteric modulators differentially alter cccDNA biosynthesis from de novo infection and intracellular amplification pathways Guo, Fang Zhao, Qiong Sheraz, Muhammad Cheng, Junjun Qi, Yonghe Su, Qing Cuconati, Andrea Wei, Lai Du, Yanming Li, Wenhui Chang, Jinhong Guo, Ju-Tao PLoS Pathog Research Article Hepatitis B virus (HBV) core protein assembles viral pre-genomic (pg) RNA and DNA polymerase into nucleocapsids for reverse transcriptional DNA replication to take place. Several chemotypes of small molecules, including heteroaryldihydropyrimidines (HAPs) and sulfamoylbenzamides (SBAs), have been discovered to allosterically modulate core protein structure and consequentially alter the kinetics and pathway of core protein assembly, resulting in formation of irregularly-shaped core protein aggregates or “empty” capsids devoid of pre-genomic RNA and viral DNA polymerase. Interestingly, in addition to inhibiting nucleocapsid assembly and subsequent viral genome replication, we have now demonstrated that HAPs and SBAs differentially modulate the biosynthesis of covalently closed circular (ccc) DNA from de novo infection and intracellular amplification pathways by inducing disassembly of nucleocapsids derived from virions as well as double-stranded DNA-containing progeny nucleocapsids in the cytoplasm. Specifically, the mistimed cuing of nucleocapsid uncoating prevents cccDNA formation during de novo infection of hepatocytes, while transiently accelerating cccDNA synthesis from cytoplasmic progeny nucleocapsids. Our studies indicate that elongation of positive-stranded DNA induces structural changes of nucleocapsids, which confers ability of mature nucleocapsids to bind CpAMs and triggers its disassembly. Understanding the molecular mechanism underlying the dual effects of the core protein allosteric modulators on nucleocapsid assembly and disassembly will facilitate the discovery of novel core protein-targeting antiviral agents that can more efficiently suppress cccDNA synthesis and cure chronic hepatitis B. Public Library of Science 2017-09-25 /pmc/articles/PMC5629035/ /pubmed/28945802 http://dx.doi.org/10.1371/journal.ppat.1006658 Text en © 2017 Guo et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Guo, Fang
Zhao, Qiong
Sheraz, Muhammad
Cheng, Junjun
Qi, Yonghe
Su, Qing
Cuconati, Andrea
Wei, Lai
Du, Yanming
Li, Wenhui
Chang, Jinhong
Guo, Ju-Tao
HBV core protein allosteric modulators differentially alter cccDNA biosynthesis from de novo infection and intracellular amplification pathways
title HBV core protein allosteric modulators differentially alter cccDNA biosynthesis from de novo infection and intracellular amplification pathways
title_full HBV core protein allosteric modulators differentially alter cccDNA biosynthesis from de novo infection and intracellular amplification pathways
title_fullStr HBV core protein allosteric modulators differentially alter cccDNA biosynthesis from de novo infection and intracellular amplification pathways
title_full_unstemmed HBV core protein allosteric modulators differentially alter cccDNA biosynthesis from de novo infection and intracellular amplification pathways
title_short HBV core protein allosteric modulators differentially alter cccDNA biosynthesis from de novo infection and intracellular amplification pathways
title_sort hbv core protein allosteric modulators differentially alter cccdna biosynthesis from de novo infection and intracellular amplification pathways
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5629035/
https://www.ncbi.nlm.nih.gov/pubmed/28945802
http://dx.doi.org/10.1371/journal.ppat.1006658
work_keys_str_mv AT guofang hbvcoreproteinallostericmodulatorsdifferentiallyaltercccdnabiosynthesisfromdenovoinfectionandintracellularamplificationpathways
AT zhaoqiong hbvcoreproteinallostericmodulatorsdifferentiallyaltercccdnabiosynthesisfromdenovoinfectionandintracellularamplificationpathways
AT sherazmuhammad hbvcoreproteinallostericmodulatorsdifferentiallyaltercccdnabiosynthesisfromdenovoinfectionandintracellularamplificationpathways
AT chengjunjun hbvcoreproteinallostericmodulatorsdifferentiallyaltercccdnabiosynthesisfromdenovoinfectionandintracellularamplificationpathways
AT qiyonghe hbvcoreproteinallostericmodulatorsdifferentiallyaltercccdnabiosynthesisfromdenovoinfectionandintracellularamplificationpathways
AT suqing hbvcoreproteinallostericmodulatorsdifferentiallyaltercccdnabiosynthesisfromdenovoinfectionandintracellularamplificationpathways
AT cuconatiandrea hbvcoreproteinallostericmodulatorsdifferentiallyaltercccdnabiosynthesisfromdenovoinfectionandintracellularamplificationpathways
AT weilai hbvcoreproteinallostericmodulatorsdifferentiallyaltercccdnabiosynthesisfromdenovoinfectionandintracellularamplificationpathways
AT duyanming hbvcoreproteinallostericmodulatorsdifferentiallyaltercccdnabiosynthesisfromdenovoinfectionandintracellularamplificationpathways
AT liwenhui hbvcoreproteinallostericmodulatorsdifferentiallyaltercccdnabiosynthesisfromdenovoinfectionandintracellularamplificationpathways
AT changjinhong hbvcoreproteinallostericmodulatorsdifferentiallyaltercccdnabiosynthesisfromdenovoinfectionandintracellularamplificationpathways
AT guojutao hbvcoreproteinallostericmodulatorsdifferentiallyaltercccdnabiosynthesisfromdenovoinfectionandintracellularamplificationpathways