Host Cell-Virus Cross Talk: Phosphorylation of a Hepatitis B Virus Envelope Protein Mediates Intracellular Signaling

Author:

Rothmann Kirsten1,Schnölzer Martina2,Radziwill Gerald3,Hildt Eberhard4,Moelling Karin3,Schaller Heinz1

Affiliation:

1. Zentrum für Molekulare Biologie Heidelberg1 and

2. DKFZ,2 D-69124 Heidelberg, and

3. Institut für Medizinische Virologie, CH-8028 Zurich, Switzerland3

4. Institut für Experimentelle Chirurgie, Klinikum Rechts der Isar, D-81675 Munich,4Germany, and

Abstract

ABSTRACT Phosphorylation of cytosolic pre-S domains of the duck hepatitis B virus (DHBV) large envelope protein (L) was identified as a regulatory modification involved in intracellular signaling. By using biochemical and mass spectrometric analyses of phosphopeptides obtained from metabolically radiolabeled L protein, a single phosphorylation site was identified at serine 118 as part of a PX(S/T)P motif, which is strongly preferred by ERK-type mitogen-activated protein kinases (MAP kinases). ERK2 specifically phosphorylated L at serine 118 in vitro, and L phosphorylation was inhibited by a coexpressed MAP kinase-specific phosphatase. Furthermore, L phosphorylation and ERK activation were shown to be induced in parallel by various stimuli. Functional analysis with transfected cells showed that DHBV L possesses the ability to activate gene expression in trans and, by using mutations eliminating (S→A) or mimicking (S→D) serine phosphorylation, that this function correlates with L phosphorylation. These mutations had, however, no major effects on virus production in cell culture and in vivo, indicating that L phosphorylation and transactivation are not essential for hepadnavirus replication and morphogenesis. Together, these data suggest a role of the L protein in intracellular host-virus cross talk by varying the levels of pre-S phosphorylation in response to the state of the cell.

Publisher

American Society for Microbiology

Subject

Virology,Insect Science,Immunology,Microbiology

Reference61 articles.

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5. Phosphopeptide mapping and phosphoamino acid analysis by two-dimensional separation on thin-layer cellulose plates;Boyle W. J.;Methods Enzymol.,1991

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