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In Vivo Detection and Analysis of Rb Protein SUMOylation in Human Cells
Published on: November 2, 2017
Ubiquitination of, and sumoylation by, the Arf tumor suppressor
Willem den Besten1, Mei-Ling Kuo, Kenji Tago
1Department of Genetics and Tumor Cell Biology, St Jude Children's Research Hospital, Memphis, Tennessee 38105, USA.
Abstract:
The Ink4a-Arf locus, which encodes two distinct tumor suppressor proteins, is inactivated in many cancers. Whereas p16Ink4a is an inhibitor of cyclin D-dependent kinases, p19Arf (p14ARF in humans) antagonizes the E3 ubiquitin protein ligase activity of Mdm2 to activate p53. We now recognize that Arf functions in both p53-dependent and -independent modes to counteract hyper-proliferative signals originating from proto-oncogene activation, but its p53-independent activities remain poorly understood. Arf proteins are highly basic (> 20% arginine content, pl > 12) and predominantly localize within nucleoli in physical association with an abundant acidic protein, nucleophosmin (NPM/B23). When bound to NPM, Arf proteins are relatively stable with half-lives of 6-8 hours. Although mouse p19Arf contains only a single lysine residue and human p14ARF has none, both proteins are N-terminally ubiquitinated and degraded in proteasomes. Through as yet uncharacterized mechanisms, p19Arf induces p53-independent sumoylation of a variety of cellular target proteins with which it interacts, including both Mdm2 and NPM. A naturally occurring NPM mutant (NPMc) expressed in myeloid leukemia cells redirects both wild-type NPM and p19Arf to the cytoplasm, inhibits Arf-induced sumoylation, and attenuates p53 activity. Thus, ubiquitination and sumoylation can each influence Arf tumor suppressor activity.
Insights
The Arf tumor suppressor protein
Area of Science:
- Oncology
- Molecular Biology
- Cellular Biology
Background:
- The Ink4a-Arf locus encodes tumor suppressors inactivated in cancer.
- p16Ink4a inhibits cyclin D-dependent kinases.
- p19Arf (p14ARF) antagonizes Mdm2 to activate p53, with poorly understood p53-independent roles.
Purpose of the Study:
- To investigate the p53-independent activities of Arf.
- To explore the roles of ubiquitination and sumoylation in Arf tumor suppressor function.
Main Methods:
- Analysis of Arf protein localization and stability.
- Investigation of Arf interactions with Nucleophosmin (NPM/B23).
- Study of ubiquitination and sumoylation of Arf and its targets.
Main Results:
- Arf proteins are basic, nucleolar, and associate with NPM.
- Arf is N-terminally ubiquitinated and proteasome-degraded.
- p19Arf induces p53-independent sumoylation of Mdm2 and NPM.
- A myeloid leukemia NPM mutant (NPMc) disrupts Arf localization, sumoylation, and p53 activity.
Conclusions:
- Arf tumor suppressor activity is influenced by both ubiquitination and sumoylation.
- NPM and its mutants play critical roles in regulating Arf function.
- Understanding Arf post-translational modifications is key to its tumor suppressor roles.
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