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Double somatic mutations in CTNNB1 and GNA11 in an aldosterone-producing adenoma
Kazutaka Nanba1,2,3, Amy R Blinder3, Aaron M Udager4,5,6
1Department of Endocrinology and Metabolism, National Hospital Organization Kyoto Medical Center, Kyoto, Japan.
Abstract:
Double somatic mutations in CTNNB1 and GNA11/Q have recently been identified in a small subset of aldosterone-producing adenomas (APAs). As a possible pathogenesis of APA due to these mutations, an association with pregnancy, menopause, or puberty has been proposed. However, because of its rarity, characteristics of APA with these mutations have not been well characterized. A 46-year-old Japanese woman presented with hypertension and hypokalemia. She had two pregnancies in the past but had no history of pregnancy-induced hypertension. She had regular menstrual cycle at presentation and was diagnosed as having primary aldosteronism after endocrinologic examinations. Computed tomography revealed a 2 cm right adrenal mass. Adrenal venous sampling demonstrated excess aldosterone production from the right adrenal gland. She underwent right laparoscopic adrenalectomy. The resected right adrenal tumor was histologically diagnosed as adrenocortical adenoma and subsequent immunohistochemistry (IHC) revealed diffuse immunoreactivity of aldosterone synthase (CYP11B2) and visinin like 1, a marker of the zona glomerulosa (ZG), whereas 11β-hydroxylase, a steroidogenic enzyme for cortisol biosynthesis, was mostly negative. CYP11B2 IHC-guided targeted next-generation sequencing identified somatic CTNNB1 (p.D32Y) and GNA11 (p.Q209H) mutations. Immunofluorescence staining of the tumor also revealed the presence of activated β-catenin, consistent with features of the normal ZG. The expression patterns of steroidogenic enzymes and related proteins indicated ZG features of the tumor cells. PA was clinically and biochemically cured after surgery. In conclusion, our study indicated that CTNNB1 and GNA11-mutated APA has characteristics of the ZG. The disease could occur in adults with no clear association with pregnancy or menopause.
Insights
Double mutations in CTNNB1 and GNA11 genes are found in rare aldosterone-producing adenomas (APAs). These APAs exhibit features of the normal zona glomerulosa and can occur in adults without specific reproductive associations.
Area of Science:
- Endocrinology
- Oncology
- Genetics
Background:
- Aldosterone-producing adenomas (APAs) are a common cause of primary aldosteronism.
- Somatic mutations in CTNNB1 and GNA11 have been identified in a small subset of APAs.
- The clinical characteristics and pathogenesis of these specific APA subtypes remain poorly understood.
Observation:
- A 46-year-old woman with hypertension and hypokalemia was diagnosed with primary aldosteronism.
- Imaging revealed a right adrenal mass, confirmed as an adrenocortical adenoma.
- Immunohistochemistry showed CYP11B2 and visinin-like 1 expression, indicative of zona glomerulosa (ZG) differentiation.
Findings:
- Targeted next-generation sequencing identified concurrent somatic CTNNB1 (p.D32Y) and GNA11 (p.Q209H) mutations in the adrenal tumor.
- Immunofluorescence confirmed activated β-catenin and ZG-like features.
- The patient achieved biochemical and clinical cure after adrenalectomy.
Implications:
- CTNNB1 and GNA11-mutated APAs exhibit distinct ZG characteristics.
- These genetic alterations may drive APA development independently of pregnancy or menopause.
- This finding expands the understanding of APA pathogenesis and genetic landscape.
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