| Long-Fiber Carbon Nanotubes Replicate Asbestos-Induced Mesothelioma with Disruption of the Tumor Suppressor Gene Cdkn2a (Ink4a/Arf) | mesothelioma, |
| Helicobacter pylori pathogen regulates p14ARF tumor suppressor and autophagy in gastric epithelial cells | gastric, |
| P16INK4a regulates the expression of miR-146b-5p and TRAF6 in osteosarcoma. P16INK4a acts as tumor suppressor in osteosarcoma. | osteosarcoma, |
| Deletion of the p16INK4a tumor suppressor and expression of the androgen receptor induce sarcomatoid carcinomas with signet ring cells in the mouse prostate | sarcoma,prostate, |
| Promoter Hypermethylation of Tumor-Suppressor Genes p16(INK4a), RASSF1A, TIMP3, and PCQAP/MED15 in Salivary DNA as a Quadruple Biomarker Panel for Early Detection of Oral and Oropharyngeal Cancers | oral,laryngeal, |
| The p14ARF tumor suppressor restrains androgen receptor activity and prevents apoptosis in prostate cancer cells | prostate, |
| Role of tumor suppressor protein p16 in patients with oral lichen planus | oral |
| Somatic mutations of the MTS (multiple tumor suppressor) 1/CDK4l (cyclin-dependent kinase-4 inhibitor) gene in human primary non-small cell lung carcinomas. | lung, |
| Induction of ARF tumor suppressor gene expression and cell cycle arrest by transcription factor DMP1. | None |
| Loss of the ARF tumor suppressor reverses premature replicative arrest but not radiation hypersensitivity arising from disabled atm function. | None |
| Tumor suppressor INK4: comparisons of conformational properties between p16(INK4A) and p18(INK4C). | None |
| Tumor suppressor INK4: refinement of p16INK4A structure and determination of p15INK4B structure by comparative modeling and NMR data. | None |
| The human tumor suppressor arf interacts with spinophilin/neurabin II, a type 1 protein-phosphatase-binding protein. | None |
| The p14ARF tumor suppressor protein facilitates nucleolar sequestration of hypoxia-inducible factor-1alpha (HIF-1alpha ) and inhibits HIF-1-mediated transcription. | None |
| Functions as a tumor suppressor in mice. | None |
| Human tumor suppressor ARF impedes S-phase progression independent of p53. | None |
| Transcriptional regulation of the human tumor suppressor p14(ARF) by E2F1, E2F2, E2F3, and Sp1-like factors. | None |
| The Arf tumor suppressor gene promotes hyaloid vascular regression during mouse eye development | None |
| A major functional difference between the mouse and human ARF tumor suppressor proteins. | None |
| observations suggest that p14ARF tumor suppressor activity may be linked to its oligomerization status and sensitive to the redox status of the cell | None |