Herpes simplex virus protein kinase US3 activates and functionally overlaps protein kinase A to block apoptosis
Luca Benetti1, Bernard Roizman
1The Marjorie B. Kovler Viral Oncology Laboratories, University of Chicago, 910 East 58th Street, Chicago, 60637, USA.
Abstract:
Herpes simplex virus 1 encodes at least four genes whose functions include blocking apoptosis induced by exogenous agents (e.g., sorbitol, Fas ligand, and BAD protein) or replication-incompetent mutants (e.g., the d120 mutant lacking both copies of the alpha 4 gene). U(S)3, one of these four genes, encodes a serine-threonine kinase that has been demonstrated to block apoptosis induced by proapoptotic cellular proteins or by the d120 mutant. The amino acid context of serine-threonine phosphorylated by U(S)3 is similar to that of the cAMP-dependent protein kinase PKA. We report that (i) the pattern of proteins phosphorylated by U(S)3 in transduced cells or in cells infected with WT virus overlaps that of phosphoproteins targeted by PKA, (ii) activation of PKA blocks apoptosis induced by d120 mutant or by BAD protein independently of U(S)3, (iii) U(S)3 protein kinase phosphorylates peptides containing the serine or threonine targeted by PKA including that present in the regulatory type II alpha subunit of PKA, and (iv) in WT virus-infected cells the regulatory type II alpha subunit is phosphorylated in a U(S)3-dependent manner. We conclude that a major determinant of the antiapoptotic activity of the U(S)3 protein kinase is the phosphorylation of PKA substrates by either or both enzymes.
Insights
Herpes simplex virus 1
Area of Science:
- Virology
- Molecular Biology
- Cellular Biology
Background:
- Herpes simplex virus 1 (HSV-1) possesses genes that inhibit apoptosis.
- The U(S)3 gene product is a serine-threonine kinase involved in blocking apoptosis.
Purpose of the Study:
- To investigate the relationship between HSV-1 U(S)3 kinase and cAMP-dependent protein kinase (PKA).
- To determine if U(S)3 kinase activity contributes to the antiapoptotic function of HSV-1.
Main Methods:
- Comparative analysis of protein phosphorylation patterns.
- Assays for apoptosis induction and inhibition.
- In vitro kinase assays using synthetic peptides.
- Analysis of protein phosphorylation in virus-infected cells.
Main Results:
- U(S)3 kinase phosphorylates substrates similar to PKA.
- PKA activation independently inhibits apoptosis.
- U(S)3 phosphorylates PKA substrates, including the PKA regulatory subunit.
- This phosphorylation is dependent on U(S)3 during HSV-1 infection.
Conclusions:
- The antiapoptotic activity of HSV-1 U(S)3 kinase is significantly mediated by the phosphorylation of PKA substrates.
- Both U(S)3 kinase and PKA contribute to blocking apoptosis through substrate phosphorylation.
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