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HAT1 signaling confers to assembly and epigenetic regulation of HBV cccDNA minichromosome

Rationale: Hepatitis B virus (HBV) is a leading cause of liver diseases. HBV covalently closed circular DNA (cccDNA) is a critical obstacle of complete elimination by anti-HBV therapy. HBV cccDNA accumulates in nucleus as a chromatin-like cccDNA minichromosome assembled by histones and non-histones....

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Autores principales: Yang, Guang, Feng, Jinyan, Liu, Yunxia, Zhao, Man, Yuan, Ying, Yuan, Hongfeng, Yun, Haolin, Sun, Mingming, Bu, Yanan, Liu, Lei, Liu, Zixian, Niu, Jun-qi, Yin, Ming, Song, Xijun, Miao, Zhenchuan, Lin, Zhongqing, Zhang, Xiaodong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Ivyspring International Publisher 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6831306/
https://www.ncbi.nlm.nih.gov/pubmed/31695772
http://dx.doi.org/10.7150/thno.37173
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author Yang, Guang
Feng, Jinyan
Liu, Yunxia
Zhao, Man
Yuan, Ying
Yuan, Hongfeng
Yun, Haolin
Sun, Mingming
Bu, Yanan
Liu, Lei
Liu, Zixian
Niu, Jun-qi
Yin, Ming
Song, Xijun
Miao, Zhenchuan
Lin, Zhongqing
Zhang, Xiaodong
author_facet Yang, Guang
Feng, Jinyan
Liu, Yunxia
Zhao, Man
Yuan, Ying
Yuan, Hongfeng
Yun, Haolin
Sun, Mingming
Bu, Yanan
Liu, Lei
Liu, Zixian
Niu, Jun-qi
Yin, Ming
Song, Xijun
Miao, Zhenchuan
Lin, Zhongqing
Zhang, Xiaodong
author_sort Yang, Guang
collection PubMed
description Rationale: Hepatitis B virus (HBV) is a leading cause of liver diseases. HBV covalently closed circular DNA (cccDNA) is a critical obstacle of complete elimination by anti-HBV therapy. HBV cccDNA accumulates in nucleus as a chromatin-like cccDNA minichromosome assembled by histones and non-histones. However, the underlying mechanism of modulation of cccDNA minichromosome in hepatocytes is poorly understood. Methods: A human liver-chimeric mouse model was established. The cccDNA-ChIP, Southern blot analysis, confocal assays, RIP assays and RNA pull-down assays, et al. were performed to assess the mechanism of assembly and epigenetic regulation of cccDNA minichromosome in human liver-chimeric mouse model, human primary hepatocytes (PHH), dHepaRG, HepG2-NTCP cell lines and clinical liver tissues. Results: Importantly, the expression levels of HAT1, CAF-1 and lncRNA HULC were significantly elevated in the liver from HBV-infected human liver-chimeric mice. Strikingly, the depletion of HAT1 reduced HBV replication and cccDNA accumulation, and impaired the assembly of histone H3/H4 and the deposition of HBx and p300 onto cccDNA to form cccDNA minichromosome in the cells. Mechanically, chromatin assembly factor-1 (CAF-1) was involved in the events. Interestingly, HAT1 modified the acetylation of histone H3K27/H4K5/H4K12 on cccDNA minichromosome. Moreover, lncRNA HULC-scaffold HAT1/HULC/HBc complex was responsible for the modification on cccDNA minichromosome. Additionally, HBV activated HAT1 through HBx-co-activated transcriptional factor Sp1 in a positive feedback manner. Conclusion: HAT1 signaling contributes to assembly and epigenetic regulation of HBV cccDNA minichromosome.
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spelling pubmed-68313062019-11-06 HAT1 signaling confers to assembly and epigenetic regulation of HBV cccDNA minichromosome Yang, Guang Feng, Jinyan Liu, Yunxia Zhao, Man Yuan, Ying Yuan, Hongfeng Yun, Haolin Sun, Mingming Bu, Yanan Liu, Lei Liu, Zixian Niu, Jun-qi Yin, Ming Song, Xijun Miao, Zhenchuan Lin, Zhongqing Zhang, Xiaodong Theranostics Research Paper Rationale: Hepatitis B virus (HBV) is a leading cause of liver diseases. HBV covalently closed circular DNA (cccDNA) is a critical obstacle of complete elimination by anti-HBV therapy. HBV cccDNA accumulates in nucleus as a chromatin-like cccDNA minichromosome assembled by histones and non-histones. However, the underlying mechanism of modulation of cccDNA minichromosome in hepatocytes is poorly understood. Methods: A human liver-chimeric mouse model was established. The cccDNA-ChIP, Southern blot analysis, confocal assays, RIP assays and RNA pull-down assays, et al. were performed to assess the mechanism of assembly and epigenetic regulation of cccDNA minichromosome in human liver-chimeric mouse model, human primary hepatocytes (PHH), dHepaRG, HepG2-NTCP cell lines and clinical liver tissues. Results: Importantly, the expression levels of HAT1, CAF-1 and lncRNA HULC were significantly elevated in the liver from HBV-infected human liver-chimeric mice. Strikingly, the depletion of HAT1 reduced HBV replication and cccDNA accumulation, and impaired the assembly of histone H3/H4 and the deposition of HBx and p300 onto cccDNA to form cccDNA minichromosome in the cells. Mechanically, chromatin assembly factor-1 (CAF-1) was involved in the events. Interestingly, HAT1 modified the acetylation of histone H3K27/H4K5/H4K12 on cccDNA minichromosome. Moreover, lncRNA HULC-scaffold HAT1/HULC/HBc complex was responsible for the modification on cccDNA minichromosome. Additionally, HBV activated HAT1 through HBx-co-activated transcriptional factor Sp1 in a positive feedback manner. Conclusion: HAT1 signaling contributes to assembly and epigenetic regulation of HBV cccDNA minichromosome. Ivyspring International Publisher 2019-09-25 /pmc/articles/PMC6831306/ /pubmed/31695772 http://dx.doi.org/10.7150/thno.37173 Text en © The author(s) This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/). See http://ivyspring.com/terms for full terms and conditions.
spellingShingle Research Paper
Yang, Guang
Feng, Jinyan
Liu, Yunxia
Zhao, Man
Yuan, Ying
Yuan, Hongfeng
Yun, Haolin
Sun, Mingming
Bu, Yanan
Liu, Lei
Liu, Zixian
Niu, Jun-qi
Yin, Ming
Song, Xijun
Miao, Zhenchuan
Lin, Zhongqing
Zhang, Xiaodong
HAT1 signaling confers to assembly and epigenetic regulation of HBV cccDNA minichromosome
title HAT1 signaling confers to assembly and epigenetic regulation of HBV cccDNA minichromosome
title_full HAT1 signaling confers to assembly and epigenetic regulation of HBV cccDNA minichromosome
title_fullStr HAT1 signaling confers to assembly and epigenetic regulation of HBV cccDNA minichromosome
title_full_unstemmed HAT1 signaling confers to assembly and epigenetic regulation of HBV cccDNA minichromosome
title_short HAT1 signaling confers to assembly and epigenetic regulation of HBV cccDNA minichromosome
title_sort hat1 signaling confers to assembly and epigenetic regulation of hbv cccdna minichromosome
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6831306/
https://www.ncbi.nlm.nih.gov/pubmed/31695772
http://dx.doi.org/10.7150/thno.37173
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