The PML tumor suppressor controls key pathways for growth suppression, induction of apoptosis, and cellular senescence. PML loss occurs frequently in human tumors through unknown posttranslational mechanisms. Casein kinase 2 (CK2) is oncogenic and frequently upregulated in human tumors. Here we show that CK2 regulates PML protein levels by promoting its ubiquitin-mediated degradation dependent on direct phosphorylation at Ser517. Consequently, PML mutants that are resistant to CK2 phosphorylation display increased tumor-suppressive functions. In a faithful mouse model of lung cancer, we demonstrate that Pml inactivation leads to increased tumorigenesis. Furthermore, CK2 pharmacological inhibition enhances the PML tumor-suppressive property in vivo. Importantly, we found an inverse correlation between CK2 kinase activity and PML protein levels in human lung cancer-derived cell lines and primary specimens. These data identify a key posttranslational mechanism that controls PML protein levels and provide therapeutic means toward PML restoration through CK2 inhibition.

A CK2-dependent mechanism for degradation of the PML tumor suppressor.

PANDOLFI DE RINALDIS, Pier Paolo
2006-01-01

Abstract

The PML tumor suppressor controls key pathways for growth suppression, induction of apoptosis, and cellular senescence. PML loss occurs frequently in human tumors through unknown posttranslational mechanisms. Casein kinase 2 (CK2) is oncogenic and frequently upregulated in human tumors. Here we show that CK2 regulates PML protein levels by promoting its ubiquitin-mediated degradation dependent on direct phosphorylation at Ser517. Consequently, PML mutants that are resistant to CK2 phosphorylation display increased tumor-suppressive functions. In a faithful mouse model of lung cancer, we demonstrate that Pml inactivation leads to increased tumorigenesis. Furthermore, CK2 pharmacological inhibition enhances the PML tumor-suppressive property in vivo. Importantly, we found an inverse correlation between CK2 kinase activity and PML protein levels in human lung cancer-derived cell lines and primary specimens. These data identify a key posttranslational mechanism that controls PML protein levels and provide therapeutic means toward PML restoration through CK2 inhibition.
2006
126
269
283
http://dx.doi.org/10.1016/j.cell.2006.05.041
http://www.sciencedirect.com/science?_ob=MImg&_imagekey=B6WSN-4KH4DBN-F-2&_cdi=7051&_user=525216&_orig=search&_coverDate=07%2F28%2F2006&_sk=998739997&view=c&wchp=dGLbVlb-zSkWA&md5=d6e8970c1eeab6a9f8a01079d6beb150&ie=/sdarticle.pdf
Amino Acid Sequence; Amino Acid Substitution; Animals; Apoptosis; Carcinoma; Non-Small-Cell Lung; Casein Kinase II; Cell Line; Transformed; Tumor; Enzyme Activation; Enzyme Inhibitors; Genes; Tumor Suppressor; Green Fluorescent Proteins; Hemagglutinins; Humans; Leupeptins; Lung Neoplasms; Mice; Mice Transgenic; Molecular Sequence Data; NIH 3T3 Cells; Neoplasm Proteins; Nuclear Proteins; Phosphorylation; Proteasome Endopeptidase Complex; Protein Structure; Tertiary; Protein Subunits; RNA; Small Interfering; Sequence Deletion; Serine; Sorbitol; Transcription Factors; Transcriptional Activation; Triazoles; Tumor Suppressor Proteins; Ubiquitin; p38 Mitogen-Ac; tivated Protein Kinases
P. P. Scaglioni;T. M. Yung;L. F. Cai;H. Erdjument-Bromage;A. J. Kaufman;B. Singh;J. Teruya-Feldstein;P. Tempst;P. P. Pandolfi
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2318/62904
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