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Development of pheochromocytoma in ceramide synthase 2 null mice
Woo-Jae Park1, Ori Brenner2, Aviram Kogot-Levin1
1Department of Biological ChemistryWeizmann Institute of Science, Rehovot 76100, IsraelDepartment of BiochemistrySchool of Medicine, Gachon University, Incheon 406-799, South KoreaDepartment of Veterinary ResourcesWeizmann Institute of Science, Rehovot 76100, IsraelMonique and Jacques Roboh Department of Genetic ResearchDepartment of Genetics and Metabolic Diseases, Hadassah, Hebrew University Medical Center, Jerusalem, IsraelSchool of Biology and Petit Institute for Bioengineering and BioscienceGeorgia Institute of Technology, Atlanta, Georgia 30332-0230, USA Department of Biological ChemistryWeizmann Institute of Science, Rehovot 76100, IsraelDepartment of BiochemistrySchool of Medicine, Gachon University, Incheon 406-799, South KoreaDepartment of Veterinary ResourcesWeizmann Institute of Science, Rehovot 76100, IsraelMonique and Jacques Roboh Department of Genetic ResearchDepartment of Genetics and Metabolic Diseases, Hadassah, Hebrew University Medical Center, Jerusalem, IsraelSchool of Biology and Petit Institute for Bioengineering and BioscienceGeorgia Institute of Technology, Atlanta, Georgia 30332-0230, USA.
Abstract:
Pheochromocytoma (PCC) and paraganglioma are rare neuroendocrine tumors of the adrenal medulla and sympathetic and parasympathetic paraganglia, for which mutations in ∼15 disease-associated genes have been identified. We now document the role of an additional gene in mice, the ceramide synthase 2 (CerS2) gene. CerS2, one of six mammalian CerS, synthesizes ceramides with very-long (C22-C24) chains. The CerS2 null mouse has been well characterized and displays lesions in several organs including the liver, lung and the brain. We now demonstrate that changes in the sphingolipid acyl chain profile of the adrenal gland lead to the generation of adrenal medullary tumors. Histological analyses revealed that about half of the CerS2 null mice developed PCC by ∼13 months, and the rest showed signs of medullary hyperplasia. Norepinephrine and normetanephrine levels in the urine were elevated at 7 months of age consistent with the morphological abnormalities found at later ages. Accumulation of ceroid in the X-zone was observed as early as 2 months of age and as a consequence, older mice displayed elevated levels of lysosomal cathepsins, reduced proteasome activity and reduced activity of mitochondrial complex IV by 6 months of age. Together, these findings implicate an additional pathway that can lead to PCC formation, which involves alterations in the sphingolipid acyl chain length. Analysis of the role of sphingolipids in PCC may lead to further understanding of the mechanism by which PCC develops, and might implicate the sphingolipid pathway as a possible novel therapeutic target for this rare tumor.
Insights
Mice lacking the ceramide synthase 2 (CerS2) gene developed adrenal medullary tumors, indicating a new pathway for pheochromocytoma (PCC) formation. Alterations in sphingolipid acyl chain length are implicated in this rare neuroendocrine tumor development.
Area of Science:
- Endocrinology
- Oncology
- Biochemistry
Background:
- Pheochromocytoma (PCC) and paraganglioma are rare neuroendocrine tumors.
- Mutations in approximately 15 genes are known to be associated with these tumors.
- The role of ceramide synthase 2 (CerS2) in tumor development was previously unknown.
Purpose of the Study:
- To investigate the role of the ceramide synthase 2 (CerS2) gene in the development of pheochromocytoma (PCC).
- To explore the link between sphingolipid metabolism and adrenal medullary tumor formation.
Main Methods:
- Histological analysis of CerS2 null mice.
- Measurement of urinary norepinephrine and normetanephrine levels.
- Assessment of lysosomal cathepsins, proteasome activity, and mitochondrial complex IV activity.
Main Results:
- Approximately 50% of CerS2 null mice developed PCC by 13 months of age; others showed medullary hyperplasia.
- Elevated urinary norepinephrine and normetanephrine levels were observed at 7 months.
- Ceroid accumulation, increased lysosomal cathepsins, reduced proteasome activity, and decreased mitochondrial complex IV activity were noted in older mice.
Conclusions:
- Alterations in sphingolipid acyl chain length, specifically involving CerS2, can lead to pheochromocytoma development.
- This study implicates a novel pathway in PCC formation.
- Sphingolipid metabolism may represent a potential therapeutic target for rare neuroendocrine tumors like PCC.
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