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1.
Glia ; 71(11): 2511-2526, 2023 11.
Article in English | MEDLINE | ID: mdl-37533369

ABSTRACT

The expressions of ion channels by Müller glial cells (MGCs) may change in response to various retinal pathophysiological conditions. There remains a gap in our understanding of MGCs' responses to photoreceptor degeneration towards finding therapies. The study explores how an inhibition of store-operated Ca2+ entry (SOCE) and its major component, Orai1 channel, in MGCs protects photoreceptors from degeneration. The study revealed increased Orai1 expression in the MGCs of retinal degeneration 10 (rd10) mice. Enhanced expression of oxidative stress markers was confirmed as a crucial pathological mechanism in rd10 retina. Inducing oxidative stress in rat MGCs resulted in increasing SOCE and Ca2+ release-activated Ca2+ (CRAC) currents. SOCE inhibition by 2-Aminoethoxydiphenyl borate (2-APB) protected photoreceptors in degenerated retinas. Finally, molecular simulations proved the structural and dynamical features of 2-APB to the target structure Orai1. Our results provide new insights into the physiology of MGCs regarding retinal degeneration and shed a light on SOCE and Orai1 as new therapeutic targets.


Subject(s)
Calcium Channels , Retinal Degeneration , Rats , Mice , Animals , Calcium Channels/metabolism , Ependymoglial Cells/metabolism , Retinal Degeneration/drug therapy , Retinal Degeneration/prevention & control , Calcium/metabolism , ORAI1 Protein/metabolism , Stromal Interaction Molecule 1/metabolism , Calcium Signaling/physiology
2.
Pflugers Arch ; 472(8): 1093-1102, 2020 08.
Article in English | MEDLINE | ID: mdl-32556706

ABSTRACT

Diabetes and chronic kidney disease (CKD) both trigger vascular osteogenic signaling and calcification leading to early death by cardiovascular events. Osteogenic signaling involves upregulation of the transcription factors CBFA1, MSX2, and SOX9, as well as alkaline phosphatase (ALP), an enzyme fostering calcification by degrading the calcification inhibitor pyrophosphate. In CKD, osteogenic signaling is triggered by hyperphosphatemia, which upregulates the serum and glucocorticoid-inducible kinase SGK1, a strong stimulator of the Ca2+-channel ORAI1. The channel is activated by STIM1 and accomplishes store-operated Ca2+-entry (SOCE). The present study explored whether exposure of human aortic smooth muscle cells (HAoSMCs) to high extracellular glucose concentrations similarly upregulates ORAI1 and/or STIM1 expression, SOCE, and osteogenic signaling. To this end, HAoSMCs were exposed to high extracellular glucose concentrations (15 mM, 24 h) without or with additional exposure to the phosphate donor ß-glycerophosphate. Transcript levels were estimated using qRT-PCR, protein abundance using Western blotting, ALP activity using a colorimetric assay kit, calcium deposits utilizing Alizarin red staining, cytosolic Ca2+-concentration ([Ca2+]i) by Fura-2-fluorescence, and SOCE from increase of [Ca2+]i following re-addition of extracellular Ca2+ after store depletion with thapsigargin (1 µM). As a result, glucose enhanced the transcript levels of SGK1 and ORAI1, ORAI2, and STIM2, protein abundance of ORAI1, SOCE, the transcript levels of CBFA1, MSX2, SOX9, and ALPL, as well as calcium deposits. Moreover, glucose significantly augmented the stimulating effect of ß-glycerophosphate on transcript levels of SGK1 and ORAI1, SOCE, the transcript levels of osteogenic markers, as well as calcium deposits. ORAI1 inhibitor MRS1845 (10 µM) significantly blunted the glucose-induced upregulation of the CBFA1 and MSX2 transcript levels. In conclusion, the hyperglycemia of diabetes stimulates expression of SGK1 and ORAI1, thus, augmenting store-operated Ca2+-entry and osteogenic signaling in HAoSMCs.


Subject(s)
Aorta/metabolism , Calcium/metabolism , Glucose/metabolism , Myocytes, Smooth Muscle/metabolism , ORAI1 Protein/metabolism , Osteogenesis/physiology , Signal Transduction/physiology , Biomarkers/metabolism , Cells, Cultured , Diabetes Mellitus/metabolism , Humans , Hyperglycemia/metabolism , Up-Regulation/physiology
3.
Cancer Biol Ther ; 21(6): 533-540, 2020 06 02.
Article in English | MEDLINE | ID: mdl-32175798

ABSTRACT

Recent studies revealed that the histone demethylase KDM2B regulates the epithelial markers E-Cadherin and ZO-1, the RhoA/B/C-small-GTPases and actin cytoskeleton organization, in DU-145 prostate- and HCT-116 colon-tumor cells. Here we addressed the role of KDM2B in the activation of Focal Adhesion Kinase (FAK)-signaling and its involvement in regulating tumor cell motility. We used RT-PCR for gene transcriptional analysis, Western blotting for the assessment of protein expression and activity and wound-healing assay for the study of cell migration. KDM2B overexpression or silencing controls the activity of FAK in DU-145 prostate- and HCT-116 colon-tumor cells without affecting gene transcription and protein expression of this kinase. Upon KDM2B overexpression in DU-145 cells, significantly enhanced migration was observed, which was abolished in cells pretreated by the specific phosphoinositide-3 kinase (PI3 K) inhibitor LY294002, implying involvement of FAK/PI3 K signaling in the migration process. In line with this, the p85-PI3 K-subunit was downregulated upon knockdown of KDM2B in DU-145 cells, while the opposite effect became evident in KDM2B-overexpressing cells. These results revealed a novel functional role of KDM2B in regulating the activation of the FAK/PI3 K signaling in prostate cancer cells that participates in the control of cell motility.


Subject(s)
Cell Movement , Colonic Neoplasms/pathology , F-Box Proteins/metabolism , Focal Adhesion Kinase 2/metabolism , Gene Expression Regulation, Neoplastic , Jumonji Domain-Containing Histone Demethylases/metabolism , Phosphatidylinositol 3-Kinases/metabolism , Prostatic Neoplasms/pathology , Apoptosis , Biomarkers, Tumor/genetics , Biomarkers, Tumor/metabolism , Cell Proliferation , Colonic Neoplasms/genetics , Colonic Neoplasms/metabolism , F-Box Proteins/genetics , Focal Adhesion Kinase 2/genetics , Humans , Jumonji Domain-Containing Histone Demethylases/genetics , Male , Phosphatidylinositol 3-Kinases/genetics , Prostatic Neoplasms/genetics , Prostatic Neoplasms/metabolism , Tumor Cells, Cultured
4.
Sci Rep ; 10(1): 1728, 2020 02 03.
Article in English | MEDLINE | ID: mdl-32015442

ABSTRACT

Impairment of renal phosphate elimination in chronic kidney disease (CKD) leads to enhanced plasma and tissue phosphate concentration, which in turn up-regulates transcription factor NFAT5 and serum & glucocorticoid-inducible kinase SGK1. The kinase upregulates ORAI1, a Ca2+-channel accomplishing store-operated Ca2+-entry (SOCE). ORAI1 is stimulated following intracellular store depletion by Ca2+-sensors STIM1 and/or STIM2. In megakaryocytes and blood platelets SOCE and thus ORAI1 are powerful regulators of activity. The present study explored whether the phosphate-donor ß-glycerophosphate augments NFAT5, ORAI1,2,3 and/or STIM1,2 expressions and thus SOCE in megakaryocytes. Human megakaryocytic Meg01cells were exposed to 2 mM of phosphate-donor ß-glycerophosphate for 24 hours. Platelets were isolated from blood samples of patients with impaired kidney function or control volunteers. Transcript levels were estimated utilizing q-RT-PCR, cytosolic Ca2+-concentration ([Ca2+]i) by Fura-2-fluorescence, and SOCE from increase of [Ca2+]i following re-addition of extracellular Ca2+ after store depletion with thapsigargin (1 µM). NFAT5 and ORAI1 protein abundance was estimated with Western blots. As a result, ß-glycerophosphate increased NFAT5, ORAI1/2/3, STIM1/2 transcript levels, as well as SOCE. Transcript levels of NFAT5, SGK1, ORAI1/2/3, and STIM1/2 as well as NFAT5 and ORAI1 protein abundance were significantly higher in platelets isolated from patients with impaired kidney function than in platelets from control volunteers. In conclusion, phosphate-donor ß-glycerophosphate triggers a signaling cascade of NFAT5/SGK1/ORAI/STIM, thus up-regulating store-operated Ca2+-entry.


Subject(s)
Blood Platelets/physiology , Glycerophosphates/metabolism , Immediate-Early Proteins/metabolism , Kidney/metabolism , Megakaryocytes/physiology , ORAI1 Protein/metabolism , Protein Serine-Threonine Kinases/metabolism , Renal Insufficiency, Chronic/metabolism , Aged , Calcium/metabolism , Cells, Cultured , Female , Humans , Immediate-Early Proteins/genetics , Kidney/pathology , Male , Middle Aged , NFATC Transcription Factors/metabolism , ORAI1 Protein/genetics , Protein Serine-Threonine Kinases/genetics , Signal Transduction , Stromal Interaction Molecule 1/metabolism , Stromal Interaction Molecule 2/metabolism , Up-Regulation
5.
J Mol Med (Berl) ; 97(10): 1465-1475, 2019 10.
Article in English | MEDLINE | ID: mdl-31385016

ABSTRACT

Compromised renal phosphate elimination in chronic kidney disease (CKD) leads to hyperphosphatemia, which in turn triggers osteo-/chondrogenic signaling in vascular smooth muscle cells (VSMCs) and vascular calcification. Osteo-/chondrogenic transdifferentiation of VSMCs leads to upregulation of the transcription factors MSX2, CBFA1, and SOX9 as well as tissue-nonspecific alkaline phosphatase (ALPL) which fosters calcification by degrading the calcification inhibitor pyrophosphate. Osteo-/chondrogenic signaling in VSMCs involves the serum- and glucocorticoid-inducible kinase SGK1. As shown in other cell types, SGK1 is a powerful stimulator of ORAI1, a Ca2+-channel accomplishing store-operated Ca2+-entry (SOCE). ORAI1 is stimulated following intracellular store depletion by the Ca2+ sensor STIM1. The present study explored whether phosphate regulates ORAI1 and/or STIM1 expression and, thus, SOCE in VSMCs. To this end, primary human aortic smooth muscle cells (HAoSMCs) were exposed to the phosphate donor ß-glycerophosphate. Transcript levels were estimated by qRT-PCR, protein abundance by western blotting, ALPL activity by colorimetry, calcification by alizarin red S staining, cytosolic Ca2+-concentration ([Ca2+]i) by Fura-2-fluorescence, and SOCE from increase of [Ca2+]i following re-addition of extracellular Ca2+ after store depletion with thapsigargin. As a result, ß-glycerophosphate treatment increased ORAI1 and STIM1 transcript levels and protein abundance as well as SOCE in HAoSMCs. Additional treatment with ORAI1 inhibitor MRS1845 or SGK1 inhibitor GSK650394 virtually disrupted the effects of ß-glycerophosphate on SOCE. Moreover, the ß-glycerophosphate-induced MSX2, CBFA1, SOX9, and ALPL mRNA expression and activity in HAoSMCs were suppressed in the presence of the ORAI1 inhibitor and upon ORAI1 silencing. In conclusion, enhanced phosphate upregulates ORAI1 and STIM1 expression and store-operated Ca2+-entry, which participate in the orchestration of osteo-/chondrogenic signaling of VSMCs. KEY MESSAGES: • In aortic SMC, phosphate donor ß-glycerophosphate upregulates Ca2+ channel ORAI1. • In aortic SMC, ß-glycerophosphate upregulates ORAI1-activator STIM1. • In aortic SMC, ß-glycerophosphate upregulates store-operated Ca2+-entry (SOCE). • The effect of ß-glycerophosphate on SOCE is disrupted by ORAI1 inhibitor MRS1845. • Stimulation of osteogenic signaling is disrupted by MRS1845 and ORAI1 silencing.


Subject(s)
Calcium/metabolism , Myocytes, Smooth Muscle/metabolism , ORAI1 Protein/metabolism , Vascular Calcification/metabolism , Alkaline Phosphatase/genetics , Alkaline Phosphatase/metabolism , Animals , Aorta/cytology , Cell Transdifferentiation/genetics , Cells, Cultured , Gene Expression , Glycerophosphates/metabolism , Humans , Muscle, Smooth, Vascular/cytology , Myocytes, Smooth Muscle/cytology , Neoplasm Proteins/genetics , Neoplasm Proteins/metabolism , ORAI1 Protein/genetics , SOX9 Transcription Factor/genetics , SOX9 Transcription Factor/metabolism , Stromal Interaction Molecule 1/genetics , Stromal Interaction Molecule 1/metabolism , Vascular Calcification/genetics
6.
Biochem Biophys Res Commun ; 512(3): 467-472, 2019 05 07.
Article in English | MEDLINE | ID: mdl-30902388

ABSTRACT

Placental growth factor (PlGF) is produced by tumor cells and stimulates tumor growth and metastasis in part by upregulation of hypoxia inducible factor HIF1α. Orchestration of tumor cell proliferation and migration involves oscillations of cytosolic Ca2+ activity ([Ca2+]i). The [Ca2+]i oscillations could be accomplished by triggering of intracellular Ca2+ release followed by store-operated Ca2+-entry (SOCE). Mechanisms accomplishing SOCE include the pore-forming ion channel unit Orai1 and its regulator STIM1. The present study explored whether PlGF influences the expression of Orai1 and STIM1, as well as SOCE and whether this effect impacts on HIF1α expression. To this end, ovary carcinoma cells were cultured for 24 h without and with PlGF (10 ng/ml). Orai1, STIM1 and HIF1α transcript levels were quantified utilizing RT-PCR and Orai1, STIM1 and HIF1α protein levels by Western blotting. [Ca2+]i was estimated from Fura-2-fluorescence and SOCE from increase of [Ca2+]i following Ca2+ re-addition after Ca2+-store depletion with extracellular Ca2+ removal and sarcoendoplasmatic Ca2+-ATPase (SERCA) inhibitor thapsigargin (1 µM). As a result, exposure of ovary carcinoma cells to PlGF was followed by a significant increase of Orai1 as well as STIM1 transcript and protein levels. PlGF significantly increased store-operated Ca2+-entry following re-addition of extracellular Ca2+, an effect virtually abrogated by Orai1 inhibitor MRS1845 (10 µM). PlGF further increased HIF1α transcript and protein levels, an effect again significantly blunted by MRS1845 (10 µM). In conclusion, PlGF upregulates expression of both, Orai1 and STIM1 thus enhancing store-operated Ca2+-entry with subsequent upregulation of HIF1α.


Subject(s)
Calcium/metabolism , Neoplasm Proteins/genetics , ORAI1 Protein/genetics , Ovarian Neoplasms/genetics , Placenta Growth Factor/metabolism , Stromal Interaction Molecule 1/genetics , Cell Line, Tumor , Female , Gene Expression Regulation, Neoplastic , Humans , Ovarian Neoplasms/metabolism , Up-Regulation
7.
Cell Physiol Biochem ; 51(1): 278-289, 2018.
Article in English | MEDLINE | ID: mdl-30453283

ABSTRACT

BACKGROUND/AIMS: The neurodegenerative disease Chorea-Acanthocytosis (ChAc) is caused by loss-of-function-mutations of the chorein-encoding gene VPS13A. In ChAc neurons transcript levels and protein abundance of Ca2+ release activated channel moiety (CRAC) Orai1 as well as its regulator STIM1/2 are decreased, resulting in blunted store operated Ca2+-entry (SOCE) and enhanced suicidal cell death. SOCE is up-regulated and cell death decreased by lithium. The effects of lithium are paralleled by upregulation of serum & glucocorticoid inducible kinase SGK1 and abrogated by pharmacological SGK1 inhibition. In other cell types SGK1 has been shown to be partially effective by upregulation of NFκB, a transcription factor stimulating the expression of Orai1 and STIM. The present study explored whether pharmacological inhibition of NFκB interferes with Orai1/STIM1/2 expression and SOCE and their upregulation by lithium in ChAc neurons. METHODS: Cortical neurons were differentiated from induced pluripotent stem cells generated from fibroblasts of ChAc patients and healthy volunteers. Orai1 and STIM1 transcript levels and protein abundance were estimated from qRT-PCR and Western blotting, respectively, cytosolic Ca2+-activity ([Ca2+]i) from Fura-2-fluorescence, SOCE from increase of [Ca2+]i following Ca2+ re-addition after Ca2+-store depletion with sarco-endoplasmatic Ca2+-ATPase inhibitor thapsigargin (1µM), as well as CRAC current utilizing whole cell patch clamp recording. RESULTS: Orai1 and STIM1 transcript levels and protein abundance as well as SOCE and CRAC current were significantly enhanced by lithium treatment (2 mM, 24 hours). These effects were reversed by NFκB inhibitor wogonin (50 µM). CONCLUSION: The stimulation of expression and function of Orai1/STIM1/2 by lithium in ChAc neurons are disrupted by pharmacological NFκB inhibition.


Subject(s)
Calcium/metabolism , Flavanones/pharmacology , Gene Expression/drug effects , Lithium/pharmacology , Neoplasm Proteins/metabolism , ORAI1 Protein/metabolism , Stromal Interaction Molecule 1/metabolism , Calcium-Transporting ATPases/antagonists & inhibitors , Calcium-Transporting ATPases/metabolism , Cell Differentiation , Cells, Cultured , Humans , Induced Pluripotent Stem Cells/cytology , Membrane Potentials/drug effects , NF-kappa B/antagonists & inhibitors , NF-kappa B/metabolism , Neoplasm Proteins/genetics , Neurodegenerative Diseases/metabolism , Neurodegenerative Diseases/pathology , Neurons/cytology , Neurons/drug effects , Neurons/metabolism , ORAI1 Protein/genetics , Patch-Clamp Techniques , Stromal Interaction Molecule 1/genetics , Thapsigargin/pharmacology
8.
Apoptosis ; 23(11-12): 641-650, 2018 12.
Article in English | MEDLINE | ID: mdl-30238335

ABSTRACT

The transcription factor p53 suppresses tumor growth by inducing nucleated cell apoptosis and cycle arrest. Because of its influence on primitive erythroid cell differentiation and survival, p53 is an important determinant of erythropoiesis. However, the impact of p53 on the fate of erythrocytes, cells lacking nucleus and mitochondria, during their post-maturation phase in the circulation remained elusive. Erythrocyte survival may be compromised by suicidal erythrocyte death or eryptosis, which is hallmarked by phosphatidylserine translocation and stimulated by increase of cytosolic Ca2+ concentration. Here, we comparatively examined erythrocyte homeostasis in p53-mutant mice (Trp53tm1Tyj/J) and in corresponding WT mice (C57BL/6J) by analyzing eryptosis and erythropoiesis. To this end, spontaneous cell membrane phosphatidylserine exposure and cytosolic Ca2+ concentration were higher in erythrocytes drawn from Trp53tm1Tyj/J mice than from WT mice. Eryptosis induced by glucose deprivation, a pathophysiological cell stressor, was slightly, but significantly more prominent in erythrocytes drawn from Trp53tm1Tyj/J mice as compared to WT mice. The loss of erythrocytes by eryptosis was fully compensated by enhanced erythropoiesis in Trp53tm1Tyj/J mice, as reflected by increased reticulocytosis and abundance of erythroid precursor cells in the bone marrow. Accordingly, erythrocyte number, packed cell volume and hemoglobin were similar in Trp53tm1Tyj/J and WT mice. Taken together, functional p53 deficiency enhances the turnover of circulating erythrocytes by parallel increase of eryptosis and stimulated compensatory erythropoiesis.


Subject(s)
Erythrocyte Aging/genetics , Erythrocytes/physiology , Tumor Suppressor Protein p53/genetics , Animals , Blood Cell Count , Calcium/metabolism , Eryptosis/physiology , Erythrocytes/metabolism , Erythrocytes/pathology , Erythropoiesis/physiology , Genotype , Glucose/deficiency , Mice , Mice, Inbred C57BL , Mice, Transgenic , Phosphatidylserines/metabolism , Tumor Suppressor Protein p53/metabolism
9.
Cell Physiol Biochem ; 42(5): 2066-2077, 2017.
Article in English | MEDLINE | ID: mdl-28803243

ABSTRACT

BACKGROUND: The widely expressed protein chorein fosters activation of the phosphoinositide 3 kinase (PI3K) pathway thus supporting cell survival. Loss of function mutations of the chorein encoding gene VPS13A (vacuolar protein sorting-associated protein 13A) causes chorea-acanthocytosis (ChAc), a neurodegenerative disorder paralleled by deformations of erythrocytes. In mice, genetic knockout of chorein leads to enhanced neuronal apoptosis. PI3K dependent signalling upregulates Orai1, a pore forming channel protein accomplishing store operated Ca2+ entry (SOCE). Increased Orai1 expression and SOCE have been shown to confer survival of tumor cells. SOCE could be up-regulated by lithium. The present study explored, whether SOCE and/or apoptosis are altered in ChAc fibroblasts and could be modified by lithium treatment. METHODS: Fibroblasts were isolated from ChAc patients and age-matched healthy volunteers. Cytosolic Ca2+ activity ([Ca2+]i) was estimated from Fura-2-fluorescence, SOCE from increase of [Ca2+]i following Ca2+ re-addition after Ca2+-store depletion with sarcoendoplasmatic Ca2+-ATPase (SERCA) inhibitor thapsigargin (1 µM), and apoptosis from annexin-V/propidium iodide staining quantified in flow cytometry. RESULTS: SOCE was significantly smaller in ChAc fibroblasts than in control fibroblasts. Lithium (2 mM, 24 hours) significantly increased and Orai1 blocker 2-Aminoethoxydiphenyl Borate (2-APB, 50 µM, 24 hours) significantly decreased SOCE. Annexin-V-binding and propidium iodide staining were significantly higher in ChAc fibroblasts than in control fibroblasts. In ChAc fibroblasts annexin-V-binding and propidium iodide staining were significantly decreased by lithium treatment, significantly increased by 2-APB and virtually lithium insensitive in the presence of 2-APB. CONCLUSIONS: In ChAc fibroblasts, downregulation of SOCE contributes to enhanced susceptibility to apoptosis. Both, decreased SOCE and enhanced apoptosis of ChAc fibroblasts can be reversed by lithium treatment.


Subject(s)
Calcium Release Activated Calcium Channels/metabolism , Fibroblasts/drug effects , Lithium/pharmacology , Neuroacanthocytosis/pathology , Apoptosis/drug effects , Boron Compounds/pharmacology , Calcium/metabolism , Calcium Release Activated Calcium Channels/antagonists & inhibitors , Calcium-Transporting ATPases/metabolism , Case-Control Studies , Cell Survival/drug effects , Cells, Cultured , Down-Regulation/drug effects , Fibroblasts/cytology , Fibroblasts/metabolism , Fura-2/chemistry , Heterocyclic Compounds, 3-Ring/pharmacology , Humans , Microscopy, Fluorescence , Neuroacanthocytosis/metabolism
10.
Cell Physiol Biochem ; 42(6): 2169-2181, 2017.
Article in English | MEDLINE | ID: mdl-28813704

ABSTRACT

BACKGROUND: TGFß1, a decisive regulator of megakaryocyte maturation and platelet formation, has previously been shown to up-regulate both, store operated Ca2+ entry (SOCE) and Ca2+ extrusion by Na+/Ca2+ exchange. The growth factor thus augments the increase of cytosolic Ca2+ activity ([Ca2+]i) following release of Ca2+ from intracellular stores and accelerates the subsequent decline of [Ca2+]i. The effect on SOCE is dependent on a signaling cascade including p38 kinase, serum & glucocorticoid inducible kinase SGK1, and nuclear factor NFκB. The specific Na+/Ca2+ exchanger isoforms involved and the signalling regulating the Na+/Ca2+ exchangers remained, however elusive. The present study explored, whether TGFß1 influences the expression and function of K+ insensitive (NCX) and K+ sensitive (NCKX) Na+/Ca2+ exchangers, and aimed to shed light on the signalling involved. METHODS: In human megakaryocytic cells (MEG01) RT-PCR was performed to quantify NCX/NCKX isoform transcript levels, [Ca2+]i was determined by Fura-2 fluorescence, and Na+/Ca2+ exchanger activity was estimated from the increase of [Ca2+]i following switch from an extracellular solution with 130 or 90 mM Na+ and 0 mM Ca2+ to an extracellular solution with 0 Na+ and 2 mM Ca2+. K+ concentration was 0 mM for analysis of NCX and 40 mM for analysis of NCKX. RESULTS: TGFß1 (60 ng/ml, 24 h) significantly increased the transcript levels of NCX1, NCKX1, NCKX2 and NCKX5. Moreover, TGFß1 (60 ng/ml, 24 h) significantly increased the activity of both, NCX and NCKX. The effect of TGFß1 on NCX and NCKX transcript levels and activity was significantly blunted by p38 kinase inhibitor Skepinone-L (1 µM), the effect on NCX and NCKX activity further by SGK1 inhibitor GSK-650394 (10 µM) and NFκB inhibitor Wogonin (100 µM). CONCLUSIONS: TGFß1 markedly up-regulates transcription of NCX1, NCKX1, NCKX2, and NCKX5 and thus Na+/Ca2+ exchanger activity, an effect requiring p38 kinase, SGK1 and NFκB.


Subject(s)
Immediate-Early Proteins/metabolism , NF-kappa B/metabolism , Protein Serine-Threonine Kinases/metabolism , Sodium-Calcium Exchanger/metabolism , Transforming Growth Factor beta1/pharmacology , Up-Regulation/drug effects , p38 Mitogen-Activated Protein Kinases/metabolism , Benzoates/pharmacology , Bridged Bicyclo Compounds, Heterocyclic/pharmacology , Calcium/metabolism , Cell Line , Dibenzocycloheptenes/pharmacology , Flavanones/pharmacology , Humans , Immediate-Early Proteins/antagonists & inhibitors , Immediate-Early Proteins/genetics , Megakaryocytes/cytology , Megakaryocytes/drug effects , Megakaryocytes/metabolism , Microscopy, Fluorescence , NF-kappa B/antagonists & inhibitors , Protein Isoforms/genetics , Protein Isoforms/metabolism , Protein Serine-Threonine Kinases/antagonists & inhibitors , Protein Serine-Threonine Kinases/genetics , Real-Time Polymerase Chain Reaction , Sodium-Calcium Exchanger/genetics , Transcription, Genetic/drug effects , p38 Mitogen-Activated Protein Kinases/antagonists & inhibitors
11.
Sci Rep ; 7(1): 6457, 2017 07 25.
Article in English | MEDLINE | ID: mdl-28743945

ABSTRACT

Chorea-Acanthocytosis (ChAc), a neurodegenerative disorder, results from loss-of-function-mutations of chorein-encoding gene VPS13A. In tumour cells chorein up-regulates ORAI1, a Ca2+-channel accomplishing store operated Ca2+-entry (SOCE) upon stimulation by STIM1. Furthermore SOCE could be up-regulated by lithium. The present study explored whether SOCE impacts on neuron apoptosis. Cortical neurons were differentiated from induced pluripotent stem cells generated from fibroblasts of ChAc patients and healthy volunteers. ORAI1 and STIM1 transcript levels and protein abundance were estimated from qRT-PCR and Western blotting, respectively, cytosolic Ca2+-activity ([Ca2+]i) from Fura-2-fluorescence, as well as apoptosis from annexin-V-binding and propidium-iodide uptake determined by flow cytometry. As a result, ORAI1 and STIM1 transcript levels and protein abundance and SOCE were significantly smaller and the percentage apoptotic cells significantly higher in ChAc neurons than in control neurons. Lithium treatment (2 mM, 24 hours) increased significantly ORAI1 and STIM1 transcript levels and protein abundance, an effect reversed by inhibition of Serum & Glucocorticoid inducible Kinase 1. ORAI1 blocker 2-APB (50 µM, 24 hours) significantly decreased SOCE, markedly increased apoptosis and abrogated the anti-apoptotic effect of lithium. In conclusion, enhanced neuronal apoptosis in ChAc at least partially results from decreased ORAI1 expression and SOCE, which could be reversed by lithium treatment.


Subject(s)
Calcium/metabolism , Lithium/pharmacology , Neuroacanthocytosis/pathology , Neurons/pathology , ORAI1 Protein/metabolism , Apoptosis/drug effects , Benzoates/pharmacology , Bridged Bicyclo Compounds, Heterocyclic/pharmacology , Cell Death , Cell Differentiation , Fibroblasts/drug effects , Fibroblasts/metabolism , Fibroblasts/pathology , Healthy Volunteers , Humans , Neoplasm Proteins/genetics , Neoplasm Proteins/metabolism , Neuroacanthocytosis/metabolism , Neurons/drug effects , Neurons/metabolism , ORAI1 Protein/genetics , Stromal Interaction Molecule 1/genetics , Stromal Interaction Molecule 1/metabolism
12.
FASEB J ; 31(8): 3439-3448, 2017 08.
Article in English | MEDLINE | ID: mdl-28446591

ABSTRACT

The transcription factor nuclear factor of activated T cells 5 (NFAT5) is up-regulated in several clinical disorders, including dehydration. NFAT5-sensitive genes include serum and glucocorticoid-inducible kinase 1 (SGK1). The kinase is a powerful regulator of Orai1, a Ca2+ channel accomplishing store-operated Ca2+ entry (SOCE). Orai1 is stimulated after intracellular store depletion by the Ca2+ sensors stromal interaction molecule 1 (STIM1), or STIM2, or both. In the present study, we explored whether nuclear factor of activated T cell (NFAT)-5 influences Ca2+ signaling in megakaryocytes. To this end, human megakaryocytic (MEG-01) cells were transfected with NFAT5 or with siNFAT5. Platelets and megakaryocytes were isolated from wild-type mice with either access to water ad libitum or dehydration by 36 h of water deprivation. Transcript levels were determined with quantitative RT-PCR and protein abundance by Western blot analysis and flow cytometry, cytosolic (intracellular) Ca2+ concentration ([Ca2+]i) by fura-2-fluorescence. SOCE was estimated from the increase of [Ca2+]i following readdition of extracellular Ca2+ after store depletion with thapsigargin (1 µM). Platelet degranulation was estimated from P-selectin abundance and integrin activation from αIIbß3 integrin abundance determined by flow cytometry. As a result, NFAT5 transfection or exposure to hypertonicity (+40 mM NaCl) of MEG-01 cells increased Orai1, Orai2, STIM1, and STIM2 transcript levels. Orai1 transcript levels were decreased by NFAT5 silencing. NFAT5 transfection and IκB inhibitor BMS 345541 (5 µM) increased SOCE, whereas NFAT5 silencing and SGK1 inhibitor GSK650394 (10 µM) decreased SOCE. In the mice, dehydration increased NFAT5 and Orai1 protein abundance in megakaryocytes and NFAT5, Orai1, and Orai2 abundance in platelets. Dehydration further augmented the degranulation and integrin activation by thrombin and collagen-related peptide. In summary, NFAT5 is a powerful regulator of Orai1-expression and SOCE in megakaryocytes.-Sahu, I., Pelzl, L., Sukkar, B., Fakhri, H., al-Maghout, T., Cao, H., Hauser, S., Gutti, R., Gawaz, M., Lang, F. NFAT5-sensitive Orai1 expression and store-operated Ca2+ entry in megakaryocytes.


Subject(s)
Calcium/metabolism , Megakaryocytes/metabolism , ORAI1 Protein/metabolism , ORAI2 Protein/metabolism , Transcription Factors/metabolism , Animals , Blood Platelets , Cell Line , Female , Gene Expression Regulation/physiology , Humans , Male , Mice , ORAI1 Protein/genetics , ORAI2 Protein/genetics , Stromal Interaction Molecule 1/genetics , Stromal Interaction Molecule 1/metabolism , Stromal Interaction Molecule 2/genetics , Stromal Interaction Molecule 2/metabolism , Transcription Factors/genetics , Transfection
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