Literature DB >> 29669831

Hepatitis B Virus Core Protein Dephosphorylation Occurs during Pregenomic RNA Encapsidation.

Qiong Zhao1, Zhanying Hu1, Junjun Cheng1, Shuo Wu1, Yue Luo1,2, Jinhong Chang1, Jianming Hu3, Ju-Tao Guo4.   

Abstract

Hepatitis B virus (HBV) core protein consists of an N-terminal assembly domain and a C-terminal domain (CTD) with seven conserved serines or threonines that are dynamically phosphorylated/dephosphorylated during the viral replication cycle. Sulfamoylbenzamide derivatives are small molecular core protein allosteric modulators (CpAMs) that bind to the heteroaryldihydropyrimidine (HAP) pocket between the core protein dimer-dimer interfaces. CpAM binding alters the kinetics and pathway of capsid assembly and can result in the formation of morphologically "normal" capsids devoid of viral pregenomic RNA (pgRNA) and DNA polymerase. In order to investigate the mechanism underlying CpAM inhibition of pgRNA encapsidation, we developed an immunoblotting assay that can resolve core protein based on its phosphorylation status and demonstrated, for the first time, that core protein is hyperphosphorylated in free dimers and empty capsids from both mock-treated and CpAM-treated cells but is hypophosphorylated in pgRNA- and DNA-containing nucleocapsids. Interestingly, inhibition of pgRNA encapsidation by a heat shock protein 90 (HSP90) inhibitor prevented core protein dephosphorylation. Moreover, core proteins with point mutations at the wall of the HAP pocket, V124A and V124W, assembled empty capsids and nucleocapsids with altered phosphorylation status. The results thus suggest that core protein dephosphorylation occurs in the assembly of pgRNA and that interference with the interaction between core protein subunits at dimer-dimer interfaces during nucleocapsid assembly alters not only capsid structure, but also core protein dephosphorylation. Hence, inhibition of pgRNA encapsidation by CpAMs might be due to disruption of core protein dephosphorylation during nucleocapsid assembly.IMPORTANCE Dynamic phosphorylation of HBV core protein regulates multiple steps of viral replication. However, the regulatory function was mainly investigated by phosphomimetic mutagenesis, which disrupts the natural dynamics of core protein phosphorylation/dephosphorylation. Development of an immunoblotting assay capable of resolving hyper- and hypophosphorylated core proteins allowed us to track the phosphorylation status of core proteins existing as free dimers and the variety of intracellular capsids and to investigate the role of core protein phosphorylation/dephosphorylation in viral replication. Here, we found that disruption of core protein interaction at dimer-dimer interfaces during nucleocapsid assembly (by CpAMs or mutagenesis) inhibited core protein dephosphorylation and pgRNA packaging. Our work has thus revealed a novel function of core protein dephosphorylation in HBV replication and the mechanism by which CpAMs, a class of compounds that are currently in clinical trials for treatment of chronic hepatitis B, induce the assembly of empty capsids.
Copyright © 2018 American Society for Microbiology.

Entities:  

Keywords:  antiviral agents; capsid assembly; capsid assembly modulators; hepatitis B virus; protein phosphorylation; viral replication

Mesh:

Substances:

Year:  2018        PMID: 29669831      PMCID: PMC6002726          DOI: 10.1128/JVI.02139-17

Source DB:  PubMed          Journal:  J Virol        ISSN: 0022-538X            Impact factor:   5.103


  48 in total

1.  Core protein phosphorylation modulates pregenomic RNA encapsidation to different extents in human and duck hepatitis B viruses.

Authors:  E V Gazina; J E Fielding; B Lin; D A Anderson
Journal:  J Virol       Date:  2000-05       Impact factor: 5.103

Review 2.  Serine-threonine protein phosphatase inhibitors: development of potential therapeutic strategies.

Authors:  Adam McCluskey; Alistair T R Sim; Jennette A Sakoff
Journal:  J Med Chem       Date:  2002-03-14       Impact factor: 7.446

3.  Interferon prevents formation of replication-competent hepatitis B virus RNA-containing nucleocapsids.

Authors:  Stefan F Wieland; Angelina Eustaquio; Christina Whitten-Bauer; Bryan Boyd; Francis V Chisari
Journal:  Proc Natl Acad Sci U S A       Date:  2005-07-01       Impact factor: 11.205

Review 4.  The Structural Biology of Hepatitis B Virus: Form and Function.

Authors:  Balasubramanian Venkatakrishnan; Adam Zlotnick
Journal:  Annu Rev Virol       Date:  2016-08-01       Impact factor: 10.431

5.  Hsp90 is required for the activity of a hepatitis B virus reverse transcriptase.

Authors:  J Hu; C Seeger
Journal:  Proc Natl Acad Sci U S A       Date:  1996-02-06       Impact factor: 11.205

6.  Genetically altering the thermodynamics and kinetics of hepatitis B virus capsid assembly has profound effects on virus replication in cell culture.

Authors:  Zhenning Tan; Megan L Maguire; Daniel D Loeb; Adam Zlotnick
Journal:  J Virol       Date:  2013-01-02       Impact factor: 5.103

7.  Phosphorylation and nuclear localization of the hepatitis B virus core protein: significance of serine in the three repeated SPRRR motifs.

Authors:  W Liao; J H Ou
Journal:  J Virol       Date:  1995-02       Impact factor: 5.103

8.  Conditional replication of duck hepatitis B virus in hepatoma cells.

Authors:  Ju-Tao Guo; Melissa Pryce; Xingtai Wang; M Inmaculada Barrasa; Jianming Hu; Christoph Seeger
Journal:  J Virol       Date:  2003-02       Impact factor: 5.103

9.  Hepatitis B Virus Capsids Have Diverse Structural Responses to Small-Molecule Ligands Bound to the Heteroaryldihydropyrimidine Pocket.

Authors:  Balasubramanian Venkatakrishnan; Sarah P Katen; Samson Francis; Srinivas Chirapu; M G Finn; Adam Zlotnick
Journal:  J Virol       Date:  2016-03-28       Impact factor: 5.103

10.  HBV maintains electrostatic homeostasis by modulating negative charges from phosphoserine and encapsidated nucleic acids.

Authors:  Pei-Yi Su; Ching-Jen Yang; Tien-Hua Chu; Chih-Hsu Chang; Chiayn Chiang; Fan-Mei Tang; Chih-Yin Lee; Chiaho Shih
Journal:  Sci Rep       Date:  2016-12-13       Impact factor: 4.379

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  23 in total

1.  Discovery of Novel Hepatitis B Virus Nucleocapsid Assembly Inhibitors.

Authors:  Xuexiang Zhang; Junjun Cheng; Julia Ma; Zhanying Hu; Shuo Wu; Nicky Hwang; John Kulp; Yanming Du; Ju-Tao Guo; Jinhong Chang
Journal:  ACS Infect Dis       Date:  2018-12-19       Impact factor: 5.084

2.  Conserved Lysine Residues of Hepatitis B Virus Core Protein Are Not Required for Covalently Closed Circular DNA Formation.

Authors:  Xupeng Hong; Jianming Hu
Journal:  J Virol       Date:  2022-07-18       Impact factor: 6.549

3.  Autophagic membranes participate in hepatitis B virus nucleocapsid assembly, precore and core protein trafficking, and viral release.

Authors:  Ja Yeon Kim Chu; Yu-Chen Chuang; Kuen-Nan Tsai; Jessica Pantuso; Yuji Ishida; Takeshi Saito; Jing-Hsiung James Ou
Journal:  Proc Natl Acad Sci U S A       Date:  2022-07-18       Impact factor: 12.779

4.  Core Protein-Directed Antivirals and Importin β Can Synergistically Disrupt Hepatitis B Virus Capsids.

Authors:  Christine Kim; Lauren F Barnes; Christopher J Schlicksup; Angela J Patterson; Brian Bothner; Martin F Jarrold; Che-Yen Joseph Wang; Adam Zlotnick
Journal:  J Virol       Date:  2021-10-27       Impact factor: 6.549

Review 5.  Virological Basis for the Cure of Chronic Hepatitis B.

Authors:  Jin Hu; Junjun Cheng; Liudi Tang; Zhanying Hu; Yue Luo; Yuhuan Li; Tianlun Zhou; Jinhong Chang; Ju-Tao Guo
Journal:  ACS Infect Dis       Date:  2018-06-25       Impact factor: 5.084

Review 6.  Targeting the multifunctional HBV core protein as a potential cure for chronic hepatitis B.

Authors:  Usha Viswanathan; Nagraj Mani; Zhanying Hu; Haiqun Ban; Yanming Du; Jin Hu; Jinhong Chang; Ju-Tao Guo
Journal:  Antiviral Res       Date:  2020-08-17       Impact factor: 5.970

7.  CpAMs induce assembly of HBV capsids with altered electrophoresis mobility: Implications for mechanism of inhibiting pgRNA packaging.

Authors:  Shuo Wu; Yue Luo; Usha Viswanathan; John Kulp; Junjun Cheng; Zhanying Hu; Qifang Xu; Yan Zhou; Guo-Zhong Gong; Jinhong Chang; Yuhuan Li; Ju-Tao Guo
Journal:  Antiviral Res       Date:  2018-09-07       Impact factor: 5.970

8.  Hepatitis B virus core protein phosphorylation: Identification of the SRPK1 target sites and impact of their occupancy on RNA binding and capsid structure.

Authors:  Julia Heger-Stevic; Peter Zimmermann; Lauriane Lecoq; Bettina Böttcher; Michael Nassal
Journal:  PLoS Pathog       Date:  2018-12-19       Impact factor: 6.823

Review 9.  Post-translational Modification Control of HBV Biological Processes.

Authors:  Fan Yang
Journal:  Front Microbiol       Date:  2018-11-01       Impact factor: 5.640

10.  Role of Hepatitis B virus capsid phosphorylation in nucleocapsid disassembly and covalently closed circular DNA formation.

Authors:  Jun Luo; Ji Xi; Lu Gao; Jianming Hu
Journal:  PLoS Pathog       Date:  2020-03-30       Impact factor: 6.823

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