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Updated: Mar 12, 2026

Defining Gene Functions in Tumorigenesis by Ex vivo Ablation of Floxed Alleles in Malignant Peripheral Nerve Sheath Tumor Cells
Published on: August 25, 2021
Prkar1a gene knockout in the pancreas leads to neuroendocrine tumorigenesis
Emmanouil Saloustros1, Paraskevi Salpea1, Matthew Starost2
1Section on Endocrinology and GeneticsProgram on Developmental Endocrinology & Genetics (PDEGEN) & Pediatric Endocrinology Inter-institute Training Program, Eunice Kennedy Shriver National Institute of Child Health & Human Development (NICHD), National Institutes of Health (NIH), Bethesda, Maryland, USA.
Abstract:
Carney complex (CNC) is a rare disease associated with multiple neoplasias, including a predisposition to pancreatic tumors; it is caused most frequently by the inactivation of the PRKAR1A gene, a regulator of the cyclic AMP (cAMP)-dependent kinase (PKA). The method used was to create null alleles of prkar1a in mouse cells expressing pdx1 (Δ-Prkar1a). We found that these mice developed endocrine or mixed endocrine/acinar cell carcinomas with 100% penetrance by the age of 4-5 months. Malignant behavior of the tumors was seen as evidenced by stromal invasion and metastasis to locoregional lymph nodes. Histologically, most tumors exhibited an organoid pattern as seen in the islet-cell tumors. Biochemically, the lesions exhibited high PKA activity, as one would expect from deleting prkar1a The primary neuroendocrine nature of these tumor cells was confirmed by immunohistochemical staining and electron microscopy, the latter revealing the characteristic granules. Although the Δ-Prkar1a mice developed hypoglycemia after overnight fasting, insulin and glucagon levels in the plasma were normal. Negative immunohistochemical staining for the most commonly produced peptides (insulin, c-peptide, glucagon, gastrin and somatostatin) suggested that these tumors were non-functioning. We hypothesize that the recently identified multipotent pdx1+/insulin- cell in adult pancreas, gives rise to endocrine or mixed endocrine/acinar pancreatic malignancies with complete prkar1a deficiency. In conclusion, this mouse model supports the role of prkar1a as a tumor suppressor gene in the pancreas and points to the PKA pathway as a possible therapeutic target for these lesions.
Insights
Carney complex involves pancreatic tumors linked to PRKAR1A gene loss. Mouse models with prkar1a deficiency developed aggressive pancreatic neuroendocrine or mixed carcinomas, highlighting PKA pathway as a therapeutic target.
Area of Science:
- Oncology
- Genetics
- Endocrinology
Background:
- Carney complex (CNC) is a rare genetic disorder characterized by multiple tumors.
- A key feature of CNC is an increased risk of pancreatic neoplasms.
- PRKAR1A gene inactivation is the most common cause of CNC, affecting cyclic AMP-dependent kinase (PKA) regulation.
Purpose of the Study:
- To investigate the role of PRKAR1A in pancreatic tumorigenesis.
- To develop a mouse model for studying CNC-associated pancreatic tumors.
Main Methods:
- Created mice with null alleles of prkar1a in pdx1-expressing cells (Δ-Prkar1a).
- Monitored tumor development, characterized by histology, immunohistochemistry, and electron microscopy.
- Assessed tumor behavior, including invasion and metastasis.
Main Results:
- Δ-Prkar1a mice exhibited 100% penetrance of endocrine or mixed endocrine/acinar cell carcinomas by 4-5 months.
- Tumors showed malignant characteristics like stromal invasion and lymph node metastasis.
- High PKA activity was observed in tumors, consistent with prkar1a deletion; tumors were non-functioning neuroendocrine neoplasms.
Conclusions:
- The mouse model confirms prkar1a as a tumor suppressor gene in the pancreas.
- The study suggests a multipotent pdx1+/insulin- cell may be the origin of these pancreatic malignancies.
- The PKA pathway is identified as a potential therapeutic target for these rare pancreatic tumors.
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