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Dissecting Host-virus Interaction in Lytic Replication of a Model Herpesvirus
Published on: October 7, 2011
Cyclin-dependent kinase-like function is shared by the beta- and gamma- subset of the conserved herpesvirus protein
Chad V Kuny1, Karen Chinchilla, Michael R Culbertson
1Institute for Molecular Virology and McArdle Laboratory for Cancer Research, University of Wisconsin-Madison, Madison, Wisconsin, United States of America.
Abstract:
The UL97 protein of human cytomegalovirus (HCMV, or HHV-5 (human herpesvirus 5)), is a kinase that phosphorylates the cellular retinoblastoma (Rb) tumor suppressor and lamin A/C proteins that are also substrates of cellular cyclin-dependent kinases (Cdks). A functional complementation assay has further shown that UL97 has authentic Cdk-like activity. The other seven human herpesviruses each encode a kinase with sequence and positional homology to UL97. These UL97-homologous proteins have been termed the conserved herpesvirus protein kinases (CHPKs) to distinguish them from other human herpesvirus-encoded kinases. To determine if the Cdk-like activities of UL97 were shared by all of the CHPKs, we individually expressed epitope-tagged alleles of each protein in human Saos-2 cells to test for Rb phosphorylation, human U-2 OS cells to monitor nuclear lamina disruption and lamin A phosphorylation, or S. cerevisiae cdc28-13 mutant cells to directly assay for Cdk function. We found that the ability to phosphorylate Rb and lamin A, and to disrupt the nuclear lamina, was shared by all CHPKs from the beta- and gamma-herpesvirus families, but not by their alpha-herpesvirus homologs. Similarly, all but one of the beta and gamma CHPKs displayed bona fide Cdk activity in S. cerevisiae, while the alpha proteins did not. Thus, we have identified novel virally-encoded Cdk-like kinases, a nomenclature we abbreviate as v-Cdks. Interestingly, we found that other, non-Cdk-related activities reported for UL97 (dispersion of promyelocytic leukemia protein nuclear bodies (PML-NBs) and disruption of cytoplasmic or nuclear aggresomes) showed weak conservation among the CHPKs that, in general, did not segregate to specific viral families. Therefore, the genomic and evolutionary conservation of these kinases has not been fully maintained at the functional level. Our data indicate that these related kinases, some of which are targets of approved or developmental antiviral drugs, are likely to serve both overlapping and non-overlapping functions during viral infections.
Insights
Human cytomegalovirus UL97 kinase and related herpesvirus protein kinases (CHPKs) show cyclin-dependent kinase (Cdk)-like activity. Beta- and gamma-herpesvirus CHPKs phosphorylate Rb and disrupt the nuclear lamina, unlike alpha-herpesvirus homologs, revealing conserved viral Cdk-like kinases (v-Cdks).
Area of Science:
- Virology
- Molecular Biology
- Biochemistry
Background:
- Human cytomegalovirus (HCMV) UL97 protein is a kinase with cyclin-dependent kinase (Cdk)-like activity, phosphorylating retinoblastoma (Rb) and lamin A/C.
- Other human herpesviruses encode homologous kinases, termed conserved herpesvirus protein kinases (CHPKs).
Purpose of the Study:
- To investigate if the Cdk-like activities of UL97 are conserved across all CHPKs.
- To determine the functional conservation of CHPKs in phosphorylating Rb, disrupting the nuclear lamina, and exhibiting Cdk function.
Main Methods:
- Epitope-tagged alleles of each CHPK were expressed in human Saos-2 and U-2 OS cells to assess Rb phosphorylation and nuclear lamina disruption.
- Functional complementation assays in S. cerevisiae cdc28-13 mutant cells were used to directly assay for Cdk activity.
Main Results:
- CHPKs from beta- and gamma-herpesvirus families, but not alpha-herpesvirus homologs, could phosphorylate Rb and lamin A, and disrupt the nuclear lamina.
- Most beta- and gamma-CHPKs exhibited Cdk activity in yeast, while alpha-CHPKs did not.
- Non-Cdk related activities of UL97 showed weak and inconsistent conservation among CHPKs.
Conclusions:
- Novel virally-encoded Cdk-like kinases, termed v-Cdks, have been identified.
- Functional conservation of CHPKs is limited, with distinct activities observed across herpesvirus families.
- These v-Cdks may possess both overlapping and non-overlapping functions during viral infections, with some being targets for antiviral drugs.
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