CTCF regulates hepatitis B virus cccDNA chromatin topology

Hepatitis B Virus (HBV) is a small DNA virus that replicates via an episomal covalently closed circular DNA (cccDNA) that serves as the transcriptional template for viral mRNAs. The host protein, CCCTC-binding factor (CTCF), is a key regulator of cellular transcription by maintaining epigenetic boun...

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Main Authors: Dobrica, MO, Varghese, CS, Harris, JM, Ferguson, J, Magri, A, Arnold, R, Várnai, C, Parish, JL, McKeating, JA
Format: Journal article
Language:English
Published: Microbiology Society 2024
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author Dobrica, MO
Varghese, CS
Harris, JM
Ferguson, J
Magri, A
Arnold, R
Várnai, C
Parish, JL
McKeating, JA
author_facet Dobrica, MO
Varghese, CS
Harris, JM
Ferguson, J
Magri, A
Arnold, R
Várnai, C
Parish, JL
McKeating, JA
author_sort Dobrica, MO
collection OXFORD
description Hepatitis B Virus (HBV) is a small DNA virus that replicates via an episomal covalently closed circular DNA (cccDNA) that serves as the transcriptional template for viral mRNAs. The host protein, CCCTC-binding factor (CTCF), is a key regulator of cellular transcription by maintaining epigenetic boundaries, nucleosome phasing, stabilisation of long-range chromatin loops and directing alternative exon splicing. We previously reported that CTCF binds two conserved motifs within Enhancer I of the HBV genome and represses viral transcription, however, the underlying mechanisms were not identified. We show that CTCF depletion in cells harbouring cccDNA-like HBV molecules and in <i>de novo</i> infected cells resulted in an increase in spliced transcripts, which was most notable in the abundant SP1 spliced transcript. In contrast, depletion of CTCF in cell lines with integrated HBV DNA had no effect on the abundance of viral transcripts and in line with this observation there was limited evidence for CTCF binding to viral integrants, suggesting that CTCF-regulation of HBV transcription is specific to episomal cccDNA. Analysis of HBV chromatin topology by Assay for Transposase Accessible Chromatin Sequencing (ATAC-Seq) revealed an accessible region spanning Enhancers I and II and the basal core promoter (BCP). Mutating the CTCF binding sites within Enhancer I resulted in a dramatic rearrangement of chromatin accessibility where the open chromatin region was no longer detected, indicating loss of the phased nucleosome up- and down-stream of the HBV enhancer/BCP. These data demonstrate that CTCF functions to regulate HBV chromatin conformation and nucleosomal positioning in episomal maintained cccDNA, which has important consequences for HBV transcription regulation.
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spelling oxford-uuid:d62a2acc-5410-4708-b3fb-6930761855082024-04-10T12:28:51ZCTCF regulates hepatitis B virus cccDNA chromatin topologyJournal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:d62a2acc-5410-4708-b3fb-693076185508EnglishSymplectic ElementsMicrobiology Society2024Dobrica, MOVarghese, CSHarris, JMFerguson, JMagri, AArnold, RVárnai, CParish, JLMcKeating, JAHepatitis B Virus (HBV) is a small DNA virus that replicates via an episomal covalently closed circular DNA (cccDNA) that serves as the transcriptional template for viral mRNAs. The host protein, CCCTC-binding factor (CTCF), is a key regulator of cellular transcription by maintaining epigenetic boundaries, nucleosome phasing, stabilisation of long-range chromatin loops and directing alternative exon splicing. We previously reported that CTCF binds two conserved motifs within Enhancer I of the HBV genome and represses viral transcription, however, the underlying mechanisms were not identified. We show that CTCF depletion in cells harbouring cccDNA-like HBV molecules and in <i>de novo</i> infected cells resulted in an increase in spliced transcripts, which was most notable in the abundant SP1 spliced transcript. In contrast, depletion of CTCF in cell lines with integrated HBV DNA had no effect on the abundance of viral transcripts and in line with this observation there was limited evidence for CTCF binding to viral integrants, suggesting that CTCF-regulation of HBV transcription is specific to episomal cccDNA. Analysis of HBV chromatin topology by Assay for Transposase Accessible Chromatin Sequencing (ATAC-Seq) revealed an accessible region spanning Enhancers I and II and the basal core promoter (BCP). Mutating the CTCF binding sites within Enhancer I resulted in a dramatic rearrangement of chromatin accessibility where the open chromatin region was no longer detected, indicating loss of the phased nucleosome up- and down-stream of the HBV enhancer/BCP. These data demonstrate that CTCF functions to regulate HBV chromatin conformation and nucleosomal positioning in episomal maintained cccDNA, which has important consequences for HBV transcription regulation.
spellingShingle Dobrica, MO
Varghese, CS
Harris, JM
Ferguson, J
Magri, A
Arnold, R
Várnai, C
Parish, JL
McKeating, JA
CTCF regulates hepatitis B virus cccDNA chromatin topology
title CTCF regulates hepatitis B virus cccDNA chromatin topology
title_full CTCF regulates hepatitis B virus cccDNA chromatin topology
title_fullStr CTCF regulates hepatitis B virus cccDNA chromatin topology
title_full_unstemmed CTCF regulates hepatitis B virus cccDNA chromatin topology
title_short CTCF regulates hepatitis B virus cccDNA chromatin topology
title_sort ctcf regulates hepatitis b virus cccdna chromatin topology
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