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Published on: March 2, 2014
Antagonistic Relationship between Human Cytomegalovirus pUL27 and pUL97 Activities during Infection
Tarin M Bigley1, Justin M Reitsma1, Scott S Terhune2
1Department of Microbiology and Molecular Genetics, Biotechnology and Bioengineering Center, Medical College of Wisconsin, Milwaukee, Wisconsin, USA.
Unlabelled:
Human cytomegalovirus (HCMV) is a member of the betaherpesvirus family. During infection, an array of viral proteins manipulates the host cell cycle. We have previously shown that expression of HCMV pUL27 results in increased levels of the cyclin-dependent kinase (CDK) inhibitor p21(Cip1). In addition, pUL27 is necessary for the full antiviral activity of the pUL97 kinase inhibitor maribavir (MBV). The purpose of this study was to define the relationship between pUL27 and pUL97 and its role in MBV antiviral activity. We observed that expression of wild-type but not kinase-inactive pUL97 disrupted pUL27-dependent induction of p21(Cip1). Furthermore, pUL97 associated with and promoted the phosphorylation of pUL27. During infection, inhibition of the kinase resulted in elevated levels of p21(Cip1) in wild-type virus but not a pUL27-deficient virus. We manipulated the p21(Cip1) levels to evaluate the functional consequence to MBV. Overexpression of p21(Cip1) restored MBV activity against a pUL27-deficient virus, while disruption reduced activity against wild-type virus. We provide evidence that the functional target of p21(Cip1) in the context of MBV activity is CDK1. One CDK-like activity of pUL97 is to phosphorylate nuclear lamin A/C, resulting in altered nuclear morphology and increased viral egress. In the presence of MBV, we observed that infection using a pUL27-deficient virus still altered the nuclear morphology. This was prevented by the addition of a CDK inhibitor. Overall, our results demonstrate an antagonistic relationship between pUL27 and pUL97 activities centering on p21(Cip1) and support the idea that CDKs can complement some activities of pUL97.
Importance:
HCMV infection results in severe disease upon immunosuppression and is a leading cause of congenital birth defects. Effective antiviral compounds exist, yet they exhibit high levels of toxicity, are not approved for use during pregnancy, and can result in antiviral resistance. Our studies have uncovered new information regarding the antiviral efficacy of the HCMV pUL97 kinase inhibitor MBV as it relates to the complex interplay between pUL97 and a second HCMV protein, pUL27. We demonstrate that pUL97 functions antagonistically against pUL27 by phosphorylation-dependent inactivation of pUL27-mediated induction of p21(Cip1). In contrast, we provide evidence that p21(Cip1) functions to antagonize overlapping activities between pUL97 and cellular CDKs. In addition, these studies further support the notion that CDK inhibitors or p21(Cip1) activators might be useful in combination with MBV to effectively inhibit HCMV infections.
Insights
Human cytomegalovirus (HCMV) pUL97 kinase antagonizes pUL27 by inhibiting p21(Cip1) induction. This interaction impacts maribavir (MBV) antiviral activity, suggesting combined therapies for HCMV infections.
Area of Science:
- Virology and Molecular Biology
- Cell Cycle Regulation
- Antiviral Drug Development
Background:
- Human cytomegalovirus (HCMV) infection poses significant risks, especially in immunocompromised individuals and as a cause of congenital defects.
- Existing antiviral treatments for HCMV have limitations, including toxicity, pregnancy contraindications, and the development of resistance.
- The HCMV pUL97 kinase and its inhibitor maribavir (MBV) are crucial in managing HCMV infections, but their precise mechanisms and interactions require further elucidation.
Purpose of the Study:
- To elucidate the relationship between HCMV proteins pUL27 and pUL97.
- To define the role of this interaction in the antiviral efficacy of maribavir (MBV).
- To explore the involvement of p21(Cip1) in the interplay between pUL27, pUL97, and MBV activity.
Main Methods:
- Expression of wild-type and kinase-inactive pUL97 to assess effects on p21(Cip1) induction.
- Co-immunoprecipitation and phosphorylation assays to study pUL27-pUL97 interactions.
- Manipulation of p21(Cip1) levels (overexpression and disruption) to evaluate functional consequences on MBV antiviral activity.
- Assessment of nuclear morphology changes and viral egress inhibition.
Main Results:
- Wild-type pUL97, but not kinase-inactive pUL97, disrupted pUL27-mediated p21(Cip1) induction.
- pUL97 directly associated with and phosphorylated pUL27, leading to its inactivation.
- Inhibition of pUL97 kinase activity during infection elevated p21(Cip1) levels in wild-type HCMV but not in pUL27-deficient virus.
- Overexpression of p21(Cip1) restored MBV activity against pUL27-deficient virus, while p21(Cip1) disruption reduced MBV activity against wild-type virus.
- p21(Cip1) targets CDK1, and CDK inhibitors prevented pUL27-deficient virus-induced nuclear morphology changes in the presence of MBV.
Conclusions:
- An antagonistic relationship exists between HCMV pUL27 and pUL97, mediated by p21(Cip1).
- pUL97 antagonizes pUL27 by phosphorylating it, thereby inhibiting p21(Cip1) induction.
- p21(Cip1) antagonizes overlapping activities of pUL97 and cellular CDKs, supporting the use of CDK inhibitors or p21(Cip1) activators in combination with MBV for enhanced HCMV inhibition.
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