Chromatin remodeler BAF maintains HBV cccDNA transcriptional competence and represents a therapeutic target

Huang Dan, Zheng Yi, Deng Enze, Ji Xinlei, Zhang Yecheng, Sun Hao, Chen Yingshan, Yao Yongxuan, Zhou Yuan, Zhang Mingxia, Zhou Zhe, Chen Yinghua, Su Dan, Fan Xiaoying, Chen Xinwen, Pei Rongjuan

Journal:NUCLEIC ACIDS RESEARCH

IF:13.1

DOI:10.1093/nar/gkag073

PMID:41665011

Published:2026-02-10

research field:分子生物学肝脏病学抗病毒治疗病毒学表观遗传学

Abstract

Chronic hepatitis B virus (HBV) persistence relies on the chromatin plasticity of covalently closed circular DNA (cccDNA), a viral minichromosome resistant to current therapies. Using proximity labeling (TurboID-dCas9), ChIP-seq and DNA pull-down assays, we identified SMARCC2—a BAF scaffolding subunit—bound to cccDNA enhancer-promoter regions (EnhⅠ/XP, CP/EnhII), where it sustains nucleosome-depleted regions (NDRs) and recruits RNA polymerase II. Genetic or pharmacological BAF inhibition compacted cccDNA chromatin, reduced histone acetylation (AcH3/AcH4), and enhanced SMC5/6-mediated silencing to suppress transcription, with the BAF ATPase inhibitor FHT-2344 reducing serum HBV DNA by 50% (P <.05) and intrahepatic HBV RNA by 70% (P <.01) without cccDNA loss, indicating epigenetic silencing. Mechanistically, BAF maintains NDRs by counteracting nucleosome retention and recruiting host transcription factors such as HNF4α. This work concludes that BAF safeguards cccDNA chromatin plasticity to enable viral persistence, and targeting BAF (e.g. FHT-2344) epigenetically silences cccDNA, offering a novel strategy for functional cure.

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