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Published on: December 21, 2019
NS1 interaction with CKII alpha: novel protein complex mediating parvovirus-induced cytotoxicity
Jürg P F Nüesch1, Jean Rommelaere
1Program Infection and Cancer, Abt. F010 and INSERM U701, Deutsches Krebsforschungszentrum, Heidelberg, Germany. jpf.nuesch@dkfz-heidelberg.de
Abstract:
During a productive infection, the prototype strain of the parvovirus minute virus of mice (MVMp) induces dramatic morphological alterations in permissive A9 fibroblasts, culminating in cell lysis at the end of infection. These cytopathic effects (CPE) result from rearrangements and destruction of the cytoskeletal micro- and intermediate filaments, while other structures such as the nuclear lamina and particularly the microtubule network remain protected throughout the infection (J. P. F. Nüesch et al., Virology 331:159-174, 2005). In order to unravel the mechanism(s) by which parvoviruses trigger CPE, we searched for NS1 interaction partners by differential affinity chromatography, using distinct NS1 mutants debilitated specifically for this function. Thereby, we isolated an NS1 partner polypeptide, whose interaction with NS1 correlated with the competence of the viral product for CPE induction, and further identified it by tandem mass spectrometry and Western blotting analyses to consist of the catalytic subunit of casein kinase II, CKIIalpha. This interaction of NS1 with CKIIalpha suggested interference by the viral protein with intracellular signaling. Using permanent cell lines expressing dominant-negative CKIIalpha mutants, we were able to show that this kinase activity was indeed specifically involved in parvoviral CPE and progeny particle release. Furthermore, the NS1/CKIIalpha complex proved to be able to specifically phosphorylate viral capsids, indicating a mediator function of NS1 for CKII activity and specificity, at least in vitro. Altogether our data suggest that parvovirus-induced CPE is mediated by NS1 interference with intracellular CKII signaling.
Insights
Minute virus of mice (MVMp) parvovirus causes cell damage by interfering with casein kinase II (CKII) signaling. The viral NS1 protein interacts with CKIIalpha, mediating cytoskeletal disruption and viral release.
Area of Science:
- Virology
- Cell Biology
- Molecular Biology
Background:
- Minute virus of mice (MVMp) causes significant cytopathic effects (CPE) in permissive cells, including cytoskeletal rearrangements and cell lysis.
- The mechanisms by which parvoviruses induce CPE are not fully understood, particularly the role of viral proteins and host cell interactions.
Purpose of the Study:
- To identify host cell proteins interacting with the MVMp NS1 protein.
- To elucidate the role of NS1-interacting proteins in parvovirus-induced cytopathic effects and viral replication.
Main Methods:
- Differential affinity chromatography was used to isolate NS1 interaction partners.
- Tandem mass spectrometry and Western blotting identified the interacting protein.
- Dominant-negative mutants of casein kinase II (CKII) were used to assess its role in CPE.
- In vitro phosphorylation assays were performed to analyze the NS1/CKIIalpha complex activity.
Main Results:
- The catalytic subunit of casein kinase II, CKIIalpha, was identified as an NS1 interaction partner.
- NS1 interaction with CKIIalpha correlated with the virus's ability to induce CPE.
- CKII activity was specifically required for parvoviral CPE and progeny virus release.
- The NS1/CKIIalpha complex phosphorylated viral capsids in vitro, suggesting NS1 mediates CKII specificity.
Conclusions:
- Parvovirus-induced CPE is mediated by the viral NS1 protein interfering with intracellular CKII signaling.
- NS1 acts as a crucial mediator, hijacking CKII activity to promote viral pathogenesis.
- This interaction highlights a novel mechanism of viral manipulation of host cell kinases for replication and cell damage.
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