Investigation of the Inhibitory Effects of the Benzodiazepine Derivative, 5-BDBD on P2X4Purinergic Receptors by two Complementary Methods
doi: 10.1159/000350119 , 10.48350/43303
pmid: 23867750
Investigation of the Inhibitory Effects of the Benzodiazepine Derivative, 5-BDBD on P2X4Purinergic Receptors by two Complementary Methods
ATP-gated P2X4 purinergic receptors (P2X4Rs) are cation channels with important roles in diverse cell types. To date, lack of specific inhibitors has hampered investigations on P2X4Rs. Recently, the benzodiazepine derivative, 5-BDBD has been proposed to selectively inhibit P2X4Rs. However, limited evidences are currently available on its inhibitory properties. Thus, we aimed to characterize the inhibitory effects of 5-BDBD on recombinant human P2X4Rs.We investigated ATP-induced intracellular Ca(2+) signals and whole cell ion currents in HEK 293 cells that were either transiently or stably transfected with hP2X4Rs.Our data show that ATP (< 1 μM) stimulates P2X4R-mediated Ca(2+) influx while endogenously expressed P2Y receptors are not activated to any significant extent. Both 5-BDBD and TNP-ATP inhibit ATP-induced Ca(2+) signals and inward ion currents in a concentration-dependent manner. Application of two different concentrations of 5-BDBD causes a rightward shift in ATP dose-response curve. Since the magnitude of maximal stimulation does not change, these data suggest that 5-BDBD may competitively inhibit the P2X4Rs.Our results demonstrate that application of submicromolar ATP concentrations allows reliable assessment of recombinant P2XR functions in HEK 293 cells. Furthermore, 5-BDBD and TNP-ATP have similar inhibitory potencies on the P2X4Rs although their mechanisms of actions are different.
- University of Bern Switzerland
- University of Bern Switzerland
- University of Bern Finland
- Institute of Biochemistry and Molecular Medicine, Medical Faculty Switzerland
- SEMMELWEIS UNIVERSITY
Patch-Clamp Techniques, Purinergic P2X Receptor Antagonists, 5-BDBD, Physiology, 610 Medicine & health, QD415-436, Transfection, Biochemistry, Benzodiazepines, Adenosine Triphosphate, Allosteric Regulation, QP1-981, Humans, Calcium Signaling, Benzodiazepinones, P2X receptors, Recombinant Proteins, Electrophysiology, ATP, HEK293 Cells, Calcium infux, 570 Life sciences; biology, Calcium, Receptors, Purinergic P2X4
Patch-Clamp Techniques, Purinergic P2X Receptor Antagonists, 5-BDBD, Physiology, 610 Medicine & health, QD415-436, Transfection, Biochemistry, Benzodiazepines, Adenosine Triphosphate, Allosteric Regulation, QP1-981, Humans, Calcium Signaling, Benzodiazepinones, P2X receptors, Recombinant Proteins, Electrophysiology, ATP, HEK293 Cells, Calcium infux, 570 Life sciences; biology, Calcium, Receptors, Purinergic P2X4
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