State Key Laboratory of Molecular Oncology, MOE Key Laboratory of Protein Sciences, Beijing Frontier Research Center for Biological Structure, SXMU-Tsinghua Collaborative Innovation Center for Frontier Medicine, School of Medicine, Tsinghua University, Beijing, 100084, China.
Tsinghua-Peking Center for Life Sciences, Beijing, 100084, China.
Nat Commun. 2023 Aug 3;14(1):4663. doi: 10.1038/s41467-023-40225-w.
Molecular interplay between host epigenetic factors and viral proteins constitutes an intriguing mechanism for sustaining hepatitis B virus (HBV) life cycle and its chronic infection. HBV encodes a regulatory protein, HBx, which activates transcription and replication of HBV genome organized as covalently closed circular (ccc) DNA minichromosome. Here we illustrate how HBx accomplishes its task by hijacking Spindlin1, an epigenetic reader comprising three consecutive Tudor domains. Our biochemical and structural studies have revealed that the highly conserved N-terminal 2-21 segment of HBx (HBx) associates intimately with Tudor 3 of Spindlin1, enhancing histone H3 "K4me3-K9me3" readout by Tudors 2 and 1. Functionally, Spindlin1-HBx engagement promotes gene expression from the chromatinized cccDNA, accompanied by an epigenetic switch from an H3K9me3-enriched repressive state to an H3K4me3-marked active state, as well as a conformational switch of HBx that may occur in coordination with other HBx-binding factors, such as DDB1. Despite a proposed transrepression activity of HBx, our study reveals a key role of Spindlin1 in derepressing this conserved motif, thereby promoting HBV transcription from its chromatinized genome.
宿主表观遗传因子与病毒蛋白之间的分子相互作用构成了维持乙型肝炎病毒 (HBV) 生命周期及其慢性感染的有趣机制。HBV 编码一种调节蛋白 HBx,它激活 HBV 基因组的转录和复制,该基因组组织为共价闭合环状 (ccc) DNA 微染色体。在这里,我们说明了 HBx 如何通过劫持表观遗传读取器 Spindlin1 来完成其任务,Spindlin1 由三个连续的 Tudor 结构域组成。我们的生化和结构研究表明,HBx (HBx) 的高度保守 N 端 2-21 片段与 Spindlin1 的 Tudor 3 密切相关,增强了 Tudors 2 和 1 对组蛋白 H3“K4me3-K9me3”的读取。功能上,Spindlin1-HBx 结合促进染色质化 cccDNA 的基因表达,伴随着从 H3K9me3 富集的抑制状态到 H3K4me3 标记的活跃状态的表观遗传转换,以及 HBx 的构象转换,这种转换可能与其他 HBx 结合因子(如 DDB1)协调发生。尽管 HBx 具有拟转录抑制活性,但我们的研究揭示了 Spindlin1 在解除该保守基序抑制中的关键作用,从而促进 HBV 从其染色质化基因组转录。