Dynamics of HBV cccDNA expression and transcription in different cell growth phase

<p>Abstract</p> <p>Background</p> <p>The covalently closed-circular DNA (cccDNA) of hepatitis B virus (HBV) is associated with viral persistence in HBV-infected hepatocytes. However, the regulation of cccDNA and its transcription in the host cells at different growth st...

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Main Authors: Chong Chin-Liew, Chen Mong-Liang, Wu Yi-Chieh, Tsai Kuen-Nan, Huang Chien-Chiao, Hu Cheng-po, Jeng King-Song, Chou Yu-Chi, Chang Chungming
Format: Article
Language:English
Published: BMC 2011-12-01
Series:Journal of Biomedical Science
Subjects:
HBV
Online Access:http://www.jbiomedsci.com/content/18/1/96
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spelling doaj-e7c3375b97324d0c9c970df12d8f97f82020-11-25T00:18:44ZengBMCJournal of Biomedical Science1021-77701423-01272011-12-011819610.1186/1423-0127-18-96Dynamics of HBV cccDNA expression and transcription in different cell growth phaseChong Chin-LiewChen Mong-LiangWu Yi-ChiehTsai Kuen-NanHuang Chien-ChiaoHu Cheng-poJeng King-SongChou Yu-ChiChang Chungming<p>Abstract</p> <p>Background</p> <p>The covalently closed-circular DNA (cccDNA) of hepatitis B virus (HBV) is associated with viral persistence in HBV-infected hepatocytes. However, the regulation of cccDNA and its transcription in the host cells at different growth stages is not well understood.</p> <p>Methods</p> <p>We took advantages of a stably HBV-producing cell line, 1.3ES2, and examine the dynamic changes of HBV cccDNA, viral transcripts, and viral replication intermediates in different cellular growth stages.</p> <p>Results</p> <p>In this study, we showed that cccDNA increased suddenly in the initial proliferation phase of cell growth, probably attributable to its nuclear replenishment by intracellular nucleocapsids. The amount of cccDNA then decreased dramatically in the cells during their exponential proliferation similar to the loss of extrachromosomal plasmid DNA during cell division, after which it accumulated gradually while the host cells grew to confluency. We found that cccDNA was reduced in dividing cells and could be removed when proliferating cells were subjected to long term of lamivudine (3TC) treatment. The amounts of viral replicative intermediates were rapidly reduced in these proliferating cells and were significantly increased after cells reaching confluency. The expression levels of viral transcripts were increased in parallel with the elevated expression of hepatic transcription factors (HNF4α, CEBPα, PPARα, etc.) during cell growth confluency. The HBV transcripts were transcribed from both integrated viral genome and cccDNA, however the transcriptional abilities of cccDNA was less efficient then that from integrated viral genome in all cell growth stages. We also noted increases in the accumulation of intracellular viral particles and the secretion of mature virions as the cells reached confluency and ceased to grow.</p> <p>Conclusions</p> <p>Based on the dynamics of HBV replication, we propose that HBV replication is modulated differently in the different stages of cell growth, and can be divided into three phases (initial proliferation phase, exponential proliferation phase and growth confluency phase) according to the cell growth curve. The regulation of cccDNA in different cell growth phase and its importance regarding HBV replication are discussed.</p> http://www.jbiomedsci.com/content/18/1/96HBVcccDNAviral replicationcell proliferationgrowth confluency
collection DOAJ
language English
format Article
sources DOAJ
author Chong Chin-Liew
Chen Mong-Liang
Wu Yi-Chieh
Tsai Kuen-Nan
Huang Chien-Chiao
Hu Cheng-po
Jeng King-Song
Chou Yu-Chi
Chang Chungming
spellingShingle Chong Chin-Liew
Chen Mong-Liang
Wu Yi-Chieh
Tsai Kuen-Nan
Huang Chien-Chiao
Hu Cheng-po
Jeng King-Song
Chou Yu-Chi
Chang Chungming
Dynamics of HBV cccDNA expression and transcription in different cell growth phase
Journal of Biomedical Science
HBV
cccDNA
viral replication
cell proliferation
growth confluency
author_facet Chong Chin-Liew
Chen Mong-Liang
Wu Yi-Chieh
Tsai Kuen-Nan
Huang Chien-Chiao
Hu Cheng-po
Jeng King-Song
Chou Yu-Chi
Chang Chungming
author_sort Chong Chin-Liew
title Dynamics of HBV cccDNA expression and transcription in different cell growth phase
title_short Dynamics of HBV cccDNA expression and transcription in different cell growth phase
title_full Dynamics of HBV cccDNA expression and transcription in different cell growth phase
title_fullStr Dynamics of HBV cccDNA expression and transcription in different cell growth phase
title_full_unstemmed Dynamics of HBV cccDNA expression and transcription in different cell growth phase
title_sort dynamics of hbv cccdna expression and transcription in different cell growth phase
publisher BMC
series Journal of Biomedical Science
issn 1021-7770
1423-0127
publishDate 2011-12-01
description <p>Abstract</p> <p>Background</p> <p>The covalently closed-circular DNA (cccDNA) of hepatitis B virus (HBV) is associated with viral persistence in HBV-infected hepatocytes. However, the regulation of cccDNA and its transcription in the host cells at different growth stages is not well understood.</p> <p>Methods</p> <p>We took advantages of a stably HBV-producing cell line, 1.3ES2, and examine the dynamic changes of HBV cccDNA, viral transcripts, and viral replication intermediates in different cellular growth stages.</p> <p>Results</p> <p>In this study, we showed that cccDNA increased suddenly in the initial proliferation phase of cell growth, probably attributable to its nuclear replenishment by intracellular nucleocapsids. The amount of cccDNA then decreased dramatically in the cells during their exponential proliferation similar to the loss of extrachromosomal plasmid DNA during cell division, after which it accumulated gradually while the host cells grew to confluency. We found that cccDNA was reduced in dividing cells and could be removed when proliferating cells were subjected to long term of lamivudine (3TC) treatment. The amounts of viral replicative intermediates were rapidly reduced in these proliferating cells and were significantly increased after cells reaching confluency. The expression levels of viral transcripts were increased in parallel with the elevated expression of hepatic transcription factors (HNF4α, CEBPα, PPARα, etc.) during cell growth confluency. The HBV transcripts were transcribed from both integrated viral genome and cccDNA, however the transcriptional abilities of cccDNA was less efficient then that from integrated viral genome in all cell growth stages. We also noted increases in the accumulation of intracellular viral particles and the secretion of mature virions as the cells reached confluency and ceased to grow.</p> <p>Conclusions</p> <p>Based on the dynamics of HBV replication, we propose that HBV replication is modulated differently in the different stages of cell growth, and can be divided into three phases (initial proliferation phase, exponential proliferation phase and growth confluency phase) according to the cell growth curve. The regulation of cccDNA in different cell growth phase and its importance regarding HBV replication are discussed.</p>
topic HBV
cccDNA
viral replication
cell proliferation
growth confluency
url http://www.jbiomedsci.com/content/18/1/96
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