Folic acid modulates eNOS activity via effects on posttranslational modifications and protein–protein interactions☆
نویسندگان
چکیده
Folic acid enhances endothelial function and improves outcome in primary prevention of cardiovascular disease. The exact intracellular signalling mechanisms involved remain elusive and were therefore the subject of this study. Particular focus was placed on folic acid-induced changes in posttranslational modifications of endothelial nitric oxide synthase (eNOS). Cultured endothelial cells were exposed to folic acid in the absence or presence of phosphatidylinositol-3' kinase/Akt (PI3K/Akt) inhibitors. The phosphorylation status of eNOS was determined via western blotting. The activities of eNOS and PI3K/Akt were evaluated. The interaction of eNOS with caveolin-1, Heat-Shock Protein 90 and calmodulin was studied using co-immunoprecipitation. Intracellular localisation of eNOS was investigated using sucrose gradient centrifugation and confocal microscopy. Folic acid promoted eNOS dephosphorylation at negative regulatory sites, and increased phosphorylation at positive regulatory sites. Modulation of phosphorylation status was concomitant with increased cGMP concentrations, and PI3K/Akt activity. Inhibition of PI3K/Akt revealed specific roles for this kinase pathway in folic acid-mediated eNOS phosphorylation. Regulatory protein and eNOS protein associations were altered in favour of a positive regulatory effect in the absence of bulk changes in intracellular eNOS localisation. Folic acid-mediated eNOS activation involves the modulation of eNOS phosphorylation status at multiple residues and positive changes in important protein-protein interactions. Such intracellular mechanisms may in part explain improvements in clinical vascular outcome following folic acid treatment.
منابع مشابه
The Human Thioredoxin System: Modifications and Clinical Applications
The thioredoxin system, comprising thioredoxin (Trx), thioredoxin reductase (TrxR) and NADPH, is one of the major cellular antioxidant systems, implicated in a large and growing number of biological functions. Trx acts as an oxidoreductase via a highly conserved dithiol/disulfide motif located in the active site ( Trp-Cys-Gly-Pro- Cys-Lys-). Different factors are involved in the regulation of T...
متن کاملAldosterone Induces Oxidative Stress Via NADPH Oxidase and Downregulates the Endothelial NO Synthesase in Human Endothelial Cells
Aldosterone is traditionally viewed as a hormone regulating electrolyte and blood pressure homeostasis. Recent studies suggest that Aldo can cause microvascular damage, oxidative stress and endothelial dysfunction. However, its exact cellular mechanisms remain obscure. This study was undertaken to examine the effect of Aldo on superoxide production in human umbilical artery endothelial cel...
متن کاملeNOS activation and NO function: structural motifs responsible for the posttranslational control of endothelial nitric oxide synthase activity.
Rather than being a constitutive enzyme as was first suggested, endothelial nitric oxide synthase (eNOS) is dynamically regulated at the transcriptional, posttranscriptional, and posttranslational levels. This review will focus on how changes in eNOS function are conferred by various posttranslational modifications. The latest knowledge regarding eNOS targeting to the plasma membrane will be di...
متن کاملEffect of foliar application of iron nano-chelate and folic acid on seed yield and some physiological traits of sesame cultivars under drought tension conditions
Drought tension and iron fertilizer play an important role in determining the grain yield and quality of oil seed products. Therefore, a split plot-factorial experiment based on randomized complete blocks design with three replications was conducted to investigate the effect of foliar application of iron nano-chelate and folic acid on some quantitative and qualitative traits of two sesame culti...
متن کاملTrans-forming endothelial nitric oxide synthase in hypertension: more than meets the eye.
Endothelium exerts diverse effects within the vessel wall and on nearby target cells.1 Through these effects, endothelial cells inhibit vascular tone and vascular growth and protect against thrombosis and progression of atherosclerosis, as well as increases in blood pressure.1,2 Much of the influence of endothelium on other cells is mediated by intercellular signals carried by diffusible factor...
متن کامل