Cortisol overproduction results from DNA methylation of CYP11B1 in hypercortisolemia
SCIENTIFIC REPORTS
Authors: Kometani, Mitsuhiro; Yoneda, Takashi; Demura, Masashi; Koide, Hiroshi; Nishimoto, Koshiro; Mukai, Kuniaki; Gomez-Sanchez, Celso E.; Akagi, Tadayuki; Yokota, Takashi; Horike, Shin-ichi; Karashima, Shigehiro; Miyamori, Isamu; Yamagishi, Masakazu; Takeda, Yoshiyu
Abstract
Adrenocortical hormone excess, due to primary aldosteronism (PA) or hypercortisolemia, causes hypertension and cardiovascular complications. In PA, hypomethylation of aldosterone synthase (CYP11B2) is associated with aldosterone overproduction. However, in hypercortisolemia, the role of DNA methylation of 11 beta-hydroxylase (CYP11B1), which catalyzes cortisol biosynthesis and is highly homologous to CYP11B2, is unclear. The aims of our study were to determine whether the CYP11B1 expression was regulated through DNA methylation in hypercortisolemia with cortisolproducing adenoma (CPA), and to investigate a possible relationship between DNA methylation and somatic mutations identified in CPA. Methylation analysis showed that the CYP11B1 promoter was significantly less methylated in CPA than in adjacent unaffected adrenal tissue and white blood cells. Furthermore, in CPA with somatic mutations in either the catalytic subunit of protein kinase A (PRKACA) or the guanine nucleotide-binding protein subunit alpha (GNAS) gene, the CYP11B1 promoter was significantly hypomethylated. In addition, DNA methylation reduced CYP11B1 promoter activity using a reporter assay. Our study results suggest that DNA methylation at the CYP11B1 promoter plays a role in the regulation of CYP11B1 expression and cortisol production in CPA, and that somatic mutations associated with CPA reduce DNA methylation at the CYP11B1 promoter.
Parathyroid hormone resistance syndromes - Inactivating PTH/PTHrP signaling disorders (iPPSDs)
BEST PRACTICE & RESEARCH CLINICAL ENDOCRINOLOGY & METABOLISM
Authors: Elli, Francesca Marta; Pereda, Arrate; Linglart, Agnes; Perez de Nanclares, Guiomar; Mantovani, Giovanna
Abstract
Metabolic disorders caused by impairments of the Gs alpha/cAMP/PKA pathway affecting the signaling of PTH/PTHrP lead to features caused by non-responsiveness of target organs, in turn leading to manifestations similar to the deficiency of the hormone itself. Pseudohypoparathyroidism (PHP) and related disorders derive from a defect of the alpha subunit of the stimulatory G protein (Gs alpha) or of downstream effectors of the same pathway, such as the PKA regulatory subunit 1A and the phosphodiesterase type 4D. The increasing knowledge on these diseases made the actual classification of PHP outdated as it does not include related conditions such as acrodysostosis (ACRDYS) or progressive osseous heteroplasia (POH), so that a new nomenclature and classification has been recently proposed grouping these disorders under the term "inactivating PTH/PTHrP signaling disorder" (iPPSD). This review will focus on the pathophysiology, clinical and molecular aspects of these rare, heterogeneous but closely related diseases. (C) 2018 Elsevier Ltd. All rights reserved.