Full-Length Hepatitis B Virus Core Protein Packages Viral and Heterologous RNA with Similarly High Levels of Cooperativity

Author:

Porterfield J. Zachary12,Dhason Mary Savari2,Loeb Daniel D.3,Nassal Michael4,Stray Stephen J.5,Zlotnick Adam12

Affiliation:

1. Department of Biochemistry and Molecular Biology, University of Oklahoma Health Sciences Center, Oklahoma City, Oklahoma 73104

2. Department of Molecular and Cellular Biochemistry, Indiana University, Bloomington, Indiana 47405

3. McArdle Laboratory for Cancer Research, University of Wisconsin School of Medicine and Public Health, Madison, Wisconsin 53706

4. University Hospital Freiburg, Internal Medicine 2, Molecular Biology, Hugstetter Strasse 55, D-79106 Freiburg, Germany

5. Department of Microbiology, University of Mississippi, Jackson, Mississippi 39216

Abstract

ABSTRACT A critical feature of a viral life cycle is the ability to selectively package the viral genome. In vivo , phosphorylated hepatitis B virus (HBV) core protein specifically encapsidates a complex of pregenomic RNA (pgRNA) and viral polymerase; it has been suggested that packaging is specific for the complex. Here, we test the hypothesis that core protein has intrinsic specificity for pgRNA, independent of the polymerase. For these studies, we also evaluated the effect of core protein phosphorylation on assembly and RNA binding, using phosphorylated core protein and a phosphorylation mimic in which S155, S162, and S170 were mutated to glutamic acid. We have developed an in vitro system where capsids are disassembled and assembly-active core protein dimer is purified. With this protein, we have reassembled empty capsids and RNA-filled capsids. We found that core protein dimer bound and encapsidated both the HBV pregenomic RNA and heterologous RNA with high levels of cooperativity, irrespective of phosphorylation. In direct competition assays, no specificity for pregenomic RNA was observed. This suggests that another factor, such as the viral polymerase, is required for specific packaging. These results also beg the question of what prevents HBV core protein from assembling on nonviral RNA, preserving the protein for virus production.

Publisher

American Society for Microbiology

Subject

Virology,Insect Science,Immunology,Microbiology

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