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Updated: May 12, 2026

Identification of Cyclin-dependent Kinase 1 Specific Phosphorylation Sites by an In Vitro Kinase Assay
Published on: May 3, 2018
A novel mutation in the upstream open reading frame of the CDKN1B gene causes a MEN4 phenotype
Gianluca Occhi1, Daniela Regazzo, Giampaolo Trivellin
1Department of Medicine, Endocrinology Unit, University of Padova, Padova, Italy. gianluca.occhi@unipd.it
Abstract:
The CDKN1B gene encodes the cyclin-dependent kinase inhibitor p27(KIP1), an atypical tumor suppressor playing a key role in cell cycle regulation, cell proliferation, and differentiation. Impaired p27(KIP1) expression and/or localization are often observed in tumor cells, further confirming its central role in regulating the cell cycle. Recently, germline mutations in CDKN1B have been associated with the inherited multiple endocrine neoplasia syndrome type 4, an autosomal dominant syndrome characterized by varying combinations of tumors affecting at least two endocrine organs. In this study we identified a 4-bp deletion in a highly conserved regulatory upstream ORF (uORF) in the 5'UTR of the CDKN1B gene in a patient with a pituitary adenoma and a well-differentiated pancreatic neoplasm. This deletion causes the shift of the uORF termination codon with the consequent lengthening of the uORF-encoded peptide and the drastic shortening of the intercistronic space. Our data on the immunohistochemical analysis of the patient's pancreatic lesion, functional studies based on dual-luciferase assays, site-directed mutagenesis, and on polysome profiling show a negative influence of this deletion on the translation reinitiation at the CDKN1B starting site, with a consequent reduction in p27(KIP1) expression. Our findings demonstrate that, in addition to the previously described mechanisms leading to reduced p27(KIP1) activity, such as degradation via the ubiquitin/proteasome pathway or non-covalent sequestration, p27(KIP1) activity can also be modulated by an uORF and mutations affecting uORF could change p27(KIP1) expression. This study adds the CDKN1B gene to the short list of genes for which mutations that either create, delete, or severely modify their regulatory uORFs have been associated with human diseases.
Insights
A novel CDKN1B gene mutation affecting a regulatory upstream ORF (uORF) was identified in a patient with endocrine tumors. This deletion impairs p27(KIP1) expression, highlighting uORFs as key regulators of tumor suppressor activity.
Area of Science:
- Genetics
- Molecular Biology
- Oncology
Background:
- The CDKN1B gene encodes p27(KIP1), a tumor suppressor crucial for cell cycle control.
- Altered p27(KIP1) levels are common in various cancers.
- Germline CDKN1B mutations cause multiple endocrine neoplasia type 4.
Purpose of the Study:
- To investigate the impact of a novel CDKN1B gene mutation on p27(KIP1) expression.
- To explore the role of upstream open reading frames (uORFs) in regulating CDKN1B translation.
Main Methods:
- Identification of a 4-bp deletion in the CDKN1B 5'UTR uORF.
- Immunohistochemical analysis of patient tumor samples.
- Dual-luciferase assays, site-directed mutagenesis, and polysome profiling.
Main Results:
- The identified deletion alters the uORF termination codon and shortens the intercistronic space.
- This mutation negatively impacts translation reinitiation at the CDKN1B start site.
- Reduced p27(KIP1) expression was observed in the patient's pancreatic lesion.
Conclusions:
- Mutations affecting CDKN1B uORFs can lead to reduced p27(KIP1) expression and potentially contribute to tumorigenesis.
- This study expands the known mechanisms of p27(KIP1) regulation beyond degradation or sequestration.
- CDKN1B joins a select group of genes where uORF mutations are linked to human disease.
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