Incomplete Pattern of Steroidogenic Protein Expression in Functioning Adrenocortical Carcinomas
BIOMEDICINES
Authors: Pereira, Sofia S.; Costa, Madalena M.; Gomez-Sanchez, Celso E.; Monteiro, Mariana P.; Pignatelli, Duarte
Abstract
Autonomous steroid secretion is a common feature of adrenocortical carcinomas (ACC), although not always clinically evident owing to inefficient steroidogenesis with increased release of steroid precursors. Our study aim was to analyze the expression profile of four key proteins involved in the steroidogenesis cascade, in different adrenocortical tumors. Expression of proteins involved in steroidogenesis, namely steroidogenic acute regulatory protein (StAR), 11 beta-hydroxylase (CYP11B1), aldosterone synthase (CYP11B2) and 17 alpha-hydroxylase (CYP17A1), were analyzed by immunohistochemistry in ACC (n= 14), adenomas presenting with Cushing's syndrome (ACAc) (n= 11) and clinically non-functioning adenomas (ACAn) (n= 15). A percentage of the stained area for each protein was analyzed using ImageJ software for computerized morphometric quantification. CYP11B1, StAR and CYP17A1 expression were significantly lower in ACC when compared to ACAc. In addition, ACC presented co-staining cells for CYP11B1 and CYP11B2. CYP11B1 was the steroidogenic enzyme with the most discriminative power to distinguish ACC from ACAc, with a sensitivity of 100%, specificity of 92%, and an expression higher than 4.44%, indicating the presence of a cortisol secreting adenoma. ACC depicts an incomplete pattern of steroidogenic protein expression, with decreased CYP11B1 and CYP17A1, which could explain the predominant secretion of steroid precursors.
Collecting duct cells show differential retinoic acid responses to acute versus chronic kidney injury stimuli
SCIENTIFIC REPORTS
Authors: Papadimitriou, Alexandros; Romagnani, Paola; Angelotti, Maria Lucia; Noor, Mazhar; Corcoran, Jonathan; Raby, Katie; Wilson, Patricia D.; Li, Joan; Fraser, Donald; Piedagnel, Remi; Hendry, Bruce M.; Xu, Qihe
Abstract
Retinoic acid (RA) activates RA receptors (RAR), resulting in RA response element (RARE)-dependent gene expression in renal collecting duct (CD). Emerging evidence supports a protective role for this activity in acute kidney injury (AKI) and chronic kidney disease (CKD). Herein, we examined this activity in RARE-LacZ transgenic mice and by RARE-Luciferase reporter assays in CD cells, and investigated how this activity responds to neurotransmitters and mediators of kidney injury. In RARE-LacZ mice, Adriamycin-induced heavy albuminuria was associated with reduced RA/RAR activity in CD cells. In cultured CD cells, RA/RAR activity was repressed by acetylcholine, albumin, aldosterone, angiotensin II, high glucose, cisplatin and lipopolysaccharide, but was induced by aristolochic acid I, calcitonin gene-related peptide, endothelin-1, gentamicin, norepinephrine and vasopressin. Compared with age-matched normal human CD cells, CD-derived renal cystic epithelial cells from patients with autosomal recessive polycystic kidney disease (ARPKD) had significantly lower RA/RAR activity. Synthetic RAR agonist RA-568 was more potent than RA in rescuing RA/RAR activity repressed by albumin, high glucose, angiotensin II, aldosterone, cisplatin and lipopolysaccharide. Hence, RA/RAR in CD cells is a convergence point of regulation by neurotransmitters and mediators of kidney injury, and may be a novel therapeutic target.