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Updated: Jun 27, 2026

A Novel Method: Super-selective Adrenal Venous Sampling
Published on: September 15, 2017
New genes and/or molecular pathways associated with adrenal hyperplasias and related adrenocortical tumors
1Section on Endocrinology & Genetics, Program on Developmental Endocrinology & Genetics (PDEGEN), Eunice Kennedy Shriver National Institute of Child Health & Human Development (NICHD), Bethesda, MD 20892, USA. stratakc@mail.nih.gov
Abstract:
Over the course of the last 10 years, we have studied the genetic and molecular mechanisms leading to disorders that affect the adrenal cortex, with emphasis on those that are developmental, hereditary and associated with adrenal hypoplasia or hyperplasia, multiple tumors and abnormalities in other endocrine glands. On the basis of this work, we propose an hypothesis on how adrenocortical tumors form and the importance of the cyclic AMP-dependent signaling pathway in this process. The regulatory subunit type 1-alpha (RIalpha) of protein kinase A (PKA) (the PRKAR1A gene) is mutated in most patients with Carney complex and primary pigmented nodular adrenocortical disease (PPNAD). Phosphodiesterase-11A (the PDE11A gene) and -8B (the PDE8B gene) mutations were found in patients with isolated adrenal hyperplasia and Cushing syndrome, as well in patients with PPNAD. PKA effects on tumor suppression and/or development and the cell cycle are becoming clear: PKA and/or cAMP act as a coordinator of growth and proliferation in the adrenal cortex. Mouse models in which the respective genes have been knocked out see m to support this notion. Genome-wide searches for other genes responsible for adrenal tumors and related diseases are ongoing; recent evidece of the involvement of the mitochondrial oxidation pathway in adrenocortical tumorigenesis is derived from our study of rare associations such as those of disorders predisposing to adrenomedullary and related tumors (Carney triad, the dyad of paragangliomas and gastric stromal sarcomas or Carney-Stratakis syndrome, hereditary leiomyomatosis and renal cancer syndrome) which appear to be associated with adrenocortical lesions.
Insights
Genetic and molecular studies reveal the cyclic AMP-dependent signaling pathway
Area of Science:
- Endocrinology
- Molecular Genetics
- Oncology
Background:
- Adrenal cortex disorders encompass developmental, hereditary conditions, including hypoplasia, hyperplasia, multiple tumors, and other endocrine gland abnormalities.
- The cyclic AMP-dependent signaling pathway is implicated in the development of these adrenal conditions.
Purpose of the Study:
- To investigate the genetic and molecular mechanisms underlying adrenal cortex disorders.
- To propose a hypothesis on adrenocortical tumor formation and the role of the cyclic AMP-dependent signaling pathway.
Main Methods:
- Analysis of genetic mutations in key genes such as PRKAR1A, PDE11A, and PDE8B.
- Utilizing mouse models with gene knockouts to study PKA effects.
- Genome-wide association studies to identify novel genes involved in adrenal tumors.
Main Results:
- Mutations in PRKAR1A are prevalent in Carney complex and PPNAD.
- PDE11A and PDE8B mutations are associated with adrenal hyperplasia, Cushing syndrome, and PPNAD.
- PKA and cAMP signaling are crucial coordinators of adrenal cortex growth and proliferation, impacting tumor suppression and cell cycle regulation.
Conclusions:
- The cyclic AMP-dependent signaling pathway, particularly involving PKA, plays a critical role in adrenal cortex development and tumorigenesis.
- Further research is ongoing to identify additional genetic factors, including those in mitochondrial pathways, contributing to adrenal tumors and related syndromes.
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