Related Experiment Video
Updated: Feb 17, 2026

A Novel Method: Super-selective Adrenal Venous Sampling
Published on: September 15, 2017
Genetics of tumors of the adrenal cortex
Fidéline Bonnet-Serrano1,2, Jérôme Bertherat3,4
1Institut CochinINSERM U1016, CNRS UMR8104, Paris Descartes University, Paris, France.
Abstract:
This review describes the molecular alterations observed in the various types of tumors of the adrenal cortex, excluding Conn adenomas, especially the alterations identified by genomic approaches these last five years. Two main forms of bilateral adrenocortical tumors can be distinguished according to size and aspect of the nodules: primary pigmented nodular adrenal disease (PPNAD), which can be sporadic or part of Carney complex and primary bilateral macro nodular adrenal hyperplasia (PBMAH). The bilateral nature of the tumors suggests the existence of an underlying genetic predisposition. PPNAD and Carney complex are mainly due to germline-inactivating mutations of PRKAR1A, coding for a regulatory subunit of PKA, whereas PBMAH genetic seems more complex. However, genome-wide approaches allowed the identification of a new tumor suppressor gene, ARMC5, whose germline alteration could be responsible for at least 25% of PBMAH cases. Unilateral adrenocortical tumors are more frequent, mostly adenomas. The Wnt/beta-catenin pathway can be activated in both benign and malignant tumors by CTNNB1 mutations and by ZNRF3 inactivation in adrenal cancer (ACC). Some other signaling pathways are more specific of the tumor dignity. Thus, somatic mutations of cAMP/PKA pathway genes, mainly PRKACA, coding for the catalytic alpha-subunit of PKA, are found in cortisol-secreting adenomas, whereas IGF-II overexpression and alterations of p53 signaling pathway are observed in ACC. Genome-wide approaches including transcriptome, SNP, methylome and miRome analysis have identified new genetic and epigenetic alterations and the further clustering of ACC in subgroups associated with different prognosis, allowing the development of new prognosis markers.
Insights
Recent genomic studies reveal key molecular alterations in adrenal cortex tumors. Genetic mutations in genes like PRKAR1A and ARMC5 are linked to bilateral tumors, while others like CTNNB1 and PRKACA are implicated in unilateral tumors and adrenal cancer.
Area of Science:
- Endocrinology
- Oncology
- Genetics
Background:
- Adrenal cortex tumors encompass a spectrum of benign and malignant neoplasms.
- Understanding the molecular basis of these tumors is crucial for diagnosis and treatment.
- Bilateral and unilateral tumors often have distinct genetic underpinnings.
Purpose of the Study:
- To review recent molecular and genomic alterations in adrenal cortex tumors.
- To differentiate molecular pathways involved in benign versus malignant adrenal neoplasms.
- To identify potential diagnostic and prognostic markers through advanced genomic analyses.
Main Methods:
- Review of genomic approaches including transcriptome, SNP, methylome, and miRome analyses.
- Identification of germline and somatic mutations in key genes.
- Analysis of signaling pathway alterations (e.g., Wnt/beta-catenin, cAMP/PKA).
Main Results:
- Germline mutations in PRKAR1A are associated with primary pigmented nodular adrenal disease (PPNAD) and Carney complex.
- ARMC5 germline alterations are identified in a significant portion of primary bilateral macronodular adrenal hyperplasia (PBMAH) cases.
- Somatic mutations in PRKACA are found in cortisol-secreting adenomas, while IGF-II overexpression and p53 pathway alterations are observed in adrenal cancer (ACC).
- Wnt/beta-catenin pathway activation occurs in both benign and malignant tumors via CTNNB1 mutations or ZNRF3 inactivation in ACC.
Conclusions:
- Molecular alterations vary significantly between different types of adrenal cortex tumors.
- Genomic and epigenetic analyses are identifying new genetic drivers and potential therapeutic targets.
- Further research into these alterations can lead to improved classification and prognostic markers for adrenal cancer.
More Related Videos
10:27Testing Targeted Therapies in Cancer using Structural DNA Alteration Analysis and Patient-Derived Xenografts
Published on: July 25, 2020
10:13Modeling Astrocytoma Pathogenesis In Vitro and In Vivo Using Cortical Astrocytes or Neural Stem Cells from Conditional, Genetically Engineered Mice
Published on: August 12, 2014
Related Concept Videos
Adrenal Gland Disorders
Adrenal insufficiency, characterized by insufficient cortisol and aldosterone production, leads to conditions like Addison's disease. This disorder, affecting the adrenal cortex, exhibits symptoms such as skin bronzing, dehydration, low blood pressure, fatigue, and weight loss. Congenital adrenal hyperplasia, a genetic ailment causing...
Anatomy of the Adrenal Glands
These glands possess a distinctive yellow tinge due to the stored cholesterol and fatty acids required for hormone synthesis. They are encased in a fibrous capsule and cushioned by fat.
The adrenal gland comprises two distinct...
Hormones of the Adrenal Glands
The adrenal cortex, a powerhouse of hormone synthesis, generates over two dozen corticosteroid hormones. The zona glomerulosa produces mineralocorticoids, exemplified by aldosterone, influencing the electrolyte composition of body fluids. The synthesis of glucocorticoids such as cortisol and...
Pharmacogenetics of Drug Targets: β₂-Adrenergic Receptors, Apo E, Thymidylate Synthase
Cancers Originate from Somatic Mutations in a Single Cell
Cancer-Critical Genes II: Tumor Suppressor Genes
When the function of certain critical genes, especially those involved in cell cycle regulation and cell growth signaling cascades, gets disrupted, it upsets the cell cycle progression. Such cells with unchecked cell cycles start proliferating uncontrollably and eventually develop into tumors.
Such genes that act...