Role of glucocorticoid receptor mutations in hypertension and adrenal gland hyperplasia.
Sophia N VeroutiEdith HummlerPaul-Emmanuel VanderrielePublished in: Pflugers Archiv : European journal of physiology (2022)
Hypertension is one of the leading causes of premature death in humans and exhibits a complex aetiology including environmental and genetic factors. Mutations within the glucocorticoid receptor (GR) can cause glucocorticoid resistance, which is characterized by several clinical features like hypercortisolism, hypokalaemia, adrenal hyperplasia and hypertension. Altered glucocorticoid receptor signalling further affects sodium and potassium homeostasis as well as blood pressure regulation and cell proliferation and differentiation that influence organ development and function. In salt-sensitive hypertension, excessive renal salt transport and sympathetic nervous system stimulation may occur simultaneously, and, thus, both the mineralocorticoid receptor (MR) and the GR-signalling may be implicated or even act interdependently. This review focuses on identified GR mutations in human primary generalized glucocorticoid resistance (PGGR) patients and their related clinical phenotype with specific emphasis on adrenal gland hyperplasia and hypertension. We compare these findings to mouse and rat mutants harbouring genetically engineered mutations to further dissect the cause and/or the consequence of clinical features which are common or different.
Keyphrases
- blood pressure
- hypertensive patients
- cell proliferation
- heart rate
- end stage renal disease
- endothelial cells
- newly diagnosed
- oxidative stress
- magnetic resonance
- cell cycle
- metabolic syndrome
- type diabetes
- binding protein
- risk assessment
- computed tomography
- blood glucose
- climate change
- dna methylation
- prognostic factors
- peritoneal dialysis