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Gene Amplifications in Well-Differentiated Pancreatic Neuroendocrine Tumors Inactivate the p53 Pathway
Wenwei Hu1, Zhaohui Feng, Ippolito Modica
1Cancer Institute of New Jersey, University of Medicine and Dentistry of New Jersey, New Brunswick, NJ, USA.
Abstract:
Neuroendocrine tumors (NETs) comprise a group of rare tumors derived from the diffuse neuroendocrine system or islet endocrine cells of the pancreas. The molecular mechanisms underlying NETs are largely unknown. The tumor suppressor p53 plays a critical role in maintaining genomic stability and tumor prevention. The p53 pathway is tightly regulated by a number of proteins, among which MDM2, MDM4, and WIP1 are key negative regulators of p53 protein levels or activity. Aberrant activation of these negative regulators can attenuate the p53 function that serves as an important mechanism of tumorigenesis. In this study, several genetic alterations in pancreatic NETs were studied. These tumors exhibit various chromosomal aberrations throughout the whole genome as examined by array-based comparative genomic hybridization. Although p53 mutations are rare in NETs (<3%), this study presents evidence that the p53 pathway is altered in pancreatic NETs through aberrant activation of its negative regulators. A high percentage of pancreatic NETs contain extra gene copies of MDM2 (22%), MDM4 (30%), and WIP1 (51%), which are correlated with expression of corresponding mRNAs and proteins. In addition, there is a higher frequency (23% v. 15% in the control population) of the G/G genotype of MDM2 SNP309, a functional single-nucleotide polymorphism in the MDM2 gene that attenuates the function of the p53 protein. Overall, approximately 70% of pancreatic NETs have one or more of these genetic changes. These findings suggest that the negative regulation of p53 function could be an important mechanism for the initiation and/or progression of pancreatic NETs, and reactivation of p53 could be a potential therapeutic strategy for patients with this disease.
Insights
In pancreatic neuroendocrine tumors (NETs), the p53 tumor suppressor pathway is often dysregulated by increased activity of negative regulators like MDM2, MDM4, and WIP1. Reactivating p53 may offer a new therapeutic approach for these rare cancers.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Neuroendocrine tumors (NETs) are rare malignancies with largely unknown molecular drivers.
- The p53 tumor suppressor is crucial for genomic stability and tumor prevention.
- Key negative regulators of p53, including MDM2, MDM4, and WIP1, can become aberrantly activated, impairing p53 function and promoting tumorigenesis.
Purpose of the Study:
- To investigate the alterations in the p53 pathway, specifically focusing on negative regulators, in pancreatic neuroendocrine tumors (pNETs).
- To determine the frequency of genetic changes in MDM2, MDM4, and WIP1 genes and their impact on p53 function in pNETs.
Main Methods:
- Array-based comparative genomic hybridization (aCGH) was used to examine chromosomal aberrations.
- Gene copy numbers, mRNA and protein expression levels of MDM2, MDM4, and WIP1 were analyzed.
- Genotyping of the MDM2 SNP309 polymorphism was performed.
Main Results:
- While p53 mutations are infrequent in pNETs (<3%), alterations in its negative regulators are common.
- Increased gene copy numbers of MDM2 (22%), MDM4 (30%), and WIP1 (51%) were observed, correlating with elevated expression.
- A higher frequency of the MDM2 SNP309 G/G genotype (23% vs. 15% in controls) was found, potentially reducing p53 activity.
- Approximately 70% of pNETs exhibited at least one of these genetic alterations affecting the p53 pathway.
Conclusions:
- The p53 pathway is frequently inactivated in pNETs through the aberrant activation of its negative regulators.
- These genetic alterations in negative regulators are significant contributors to the initiation and/or progression of pancreatic NETs.
- Reactivation of p53 function represents a promising therapeutic strategy for pNET patients.
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