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Structural basis of the hepatitis B virus X protein in complex with DDB1
Article de revue   Open Access

Structural basis of the hepatitis B virus X protein in complex with DDB1

Hiroki Tanaka, Joao Diogo Dias, Basile Jay, Shunsuke Kita, Mina Sasaki, Hiroyuki Takeda, Naoki Kishimoto, Shunsuke Sasaki, Shogo Misumi, Masashi Mizokami, …
Proceedings of the National Academy of Sciences of the United States of America, Vol.122(24)
13/06/2025
PMCID: PMC12184330
PMID: 40512786

Résumé

high-speed AFM HBx hepatitis B virus cryo-EM structure Viral Regulatory and Accessory Proteins Trans-Activators Protein Binding DNA, Circular Hepatitis B virus Humans DNA-Binding Proteins Cryoelectron Microscopy Microscopy, Atomic Force Virus Replication DNA, Viral
A cure for chronic hepatitis B requires eliminating or permanently silencing covalently closed circular DNA (cccDNA). A pivotal target of this approach is the hepatitis B virus (HBV) X protein (HBx), which is a key factor that promotes transcription from cccDNA. However, the HBx structure remains unsolved. Here, we present the cryoelectron microscopy structure of HBx in complex with DDB1, which is an essential complex for cccDNA transcription. In this structure, hydrophobic interactions within HBx were identified, and mutational analysis highlighted their importance in the HBV life cycle. Our biochemical analysis revealed that the HBx–DDB1 complex directly interacts simultaneously with NSE3, which is a component of the SMC5/6 complex, and Spindlin1. Additionally, HBx–DDB1 complex dynamics were explored via high-speed atomic force microscopy. These findings provide comprehensive insights into the structure and function of HBx in HBV replication.

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