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Published on: July 14, 2016
Small mitochondrial Arf (smArf) protein corrects p53-independent developmental defects of Arf tumor
Jolieke G van Oosterwijk1,2, Chunliang Li2, Xue Yang3,4
1Howard Hughes Medical Institute, Department of Tumor Cell Biology, St. Jude Children's Research Hospital, Memphis, TN 38105.
Abstract:
The mouse p19Arf (human p14ARF) tumor suppressor protein, encoded in part from an alternative reading frame of the Ink4a (Cdkn2a) gene, inhibits the Mdm2 E3 ubiquitin ligase to activate p53. Arf is not expressed in most normal tissues of young mice but is induced by high thresholds of aberrant hyperproliferative signals, thereby activating p53 in incipient tumor cells that have experienced oncogene activation. The single Arf mRNA encodes two distinct polypeptides, including full-length p19Arf and N-terminally truncated and unstable p15smArf ("small mitochondrial Arf") initiated from an internal in-frame AUG codon specifying methionine-45. Interactions of p19Arf with Mdm2, or separately with nucleophosmin (NPM, B23) that localizes and stabilizes p19Arf within the nucleolus, require p19Arf N-terminal amino acids that are not present within p15smArf We have generated mice that produce either smARF alone or M45A-mutated (smArf-deficient) full-length p19Arf proteins. BCR-ABL-expressing pro/pre-B cells producing smArf alone are as oncogenic as their Arf-null counterparts in generating acute lymphoblastic leukemia when infused into unconditioned syngeneic mice. In contrast, smArf-deficient cells from mice of the ArfM45A strain are as resistant as wild-type Arf+/+ cells to comparable oncogenic challenge and do not produce tumors. Apart from being prone to tumor development, Arf-null mice are blind, and their male germ cells exhibit defects in meiotic maturation and sperm production. Although ArfM45A mice manifest the latter defects, smArf alone remarkably rescues both of these p53-independent developmental phenotypes.
Insights
The Arf tumor suppressor protein has two forms: full-length p19Arf and truncated p15smArf. p15smArf alone does not suppress tumors but rescues Arf-null developmental defects, while full-length p19Arf is essential for tumor suppression.
Area of Science:
- Molecular Biology
- Oncology
- Genetics
Background:
- The Arf tumor suppressor, encoded by the Ink4a gene, activates p53 in response to oncogenic stress.
- Arf exists as two isoforms: full-length p19Arf and a truncated, unstable p15smArf, initiated from an internal codon.
- p19Arf interacts with Mdm2 and nucleophosmin for p53 activation, requiring N-terminal amino acids absent in p15smArf.
Purpose of the Study:
- To investigate the distinct roles of p19Arf and p15smArf in tumor suppression and development.
- To generate and analyze mouse models expressing either smARF alone or M45A-mutated full-length p19Arf.
Main Methods:
- Generation of genetically modified mice expressing specific Arf isoforms or mutations.
- Assessment of oncogenic potential in BCR-ABL-expressing pro/pre-B cells.
- Evaluation of tumor development and p53-independent developmental phenotypes (blindness, male germ cell defects).
Main Results:
- BCR-ABL cells expressing only smARF were as oncogenic as Arf-null cells, leading to acute lymphoblastic leukemia.
- Mice with M45A-mutated Arf (smArf-deficient) resisted oncogenic challenge and did not develop tumors, similar to wild-type.
- smArf alone rescued p53-independent developmental defects in Arf-null mice, including blindness and male germ cell maturation issues.
Conclusions:
- Full-length p19Arf is critical for tumor suppression, while p15smArf lacks this function.
- p15smArf plays a significant role in rescuing p53-independent developmental phenotypes.
- The N-terminus of p19Arf is essential for Mdm2 interaction and tumor suppressor activity.
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