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Inhibition of plasma membrane Ca2+-ATPase by heparin is modulated by potassium
Authors:Felix Carla F  Oliveira Vanessa H  Moreira Otacilio C  Mignaco Julio A  Barrabin Hector  Scofano Helena M
Institution:1. Neurogenic Inflammation Research Center, Mashhad University of Medical Sciences, Mashhad, Iran;2. Department of Medical Biotechnology, School of Medicine, Mashhad University of Medical Sciences, Mashhad, Iran;3. School of Pharmacy, Mashhad University of Medical Sciences, Mashhad, Iran;4. Targeted Drug Delivery Research Center, School of Medicine, Mashhad University of Medical Sciences, Mashhad, Iran;5. Nanotechnology Research Center, School of Pharmacy, Mashhad University of Medical Sciences, Mashhad, Iran;1. Institute of Tropical Medicine, Universitätsklinikum Tübingen, Tübingen, Germany;2. Vietnamese- German Center for Medical Research (VGCARE), Hanoi, Viet Nam;3. Fondation Congolaise pour la Recherche Médicale (FCRM), Brazzaville, Congo;4. Faculty of Medicine, Duy Tan University, Da Nang, Viet Nam;1. Institute of Chemistry, University of Zurich, Winterthurerstrasse 190, 8057 Zurich, Switzerland;2. Institute of Inorganic Chemistry, ETH Zurich, Vladimir-Prelog-Weg 1-2, 8093 Zurich, Switzerland
Abstract:Heparin is related to several protein receptors that control Ca2+ homeostasis. Here, we studied the effects of heparin on the plasma membrane Ca2+-ATPase from erythrocytes. Both ATP hydrolysis and Ca2+ uptake were inhibited by heparin without modification of the steady-state level of phosphoenzyme formed by ATP. Calmodulin did neither modify the inhibition nor the binding of heparin. Inhibition by heparin was counteracted by K+ but not by Li+. This effect was extended to other sulfated polysaccharides with high number of sulfate residues. Hydrolysis of p-nitrophenylphosphate was equally inhibited by heparin. No evidence for enzyme uncoupling was observed: Ca2+ uptake and ATP hydrolysis remained tightly associated at any level of heparin, and heparin did not increase the passive Ca2+ efflux of inside-out vesicles. Vanadate blocked this efflux, indicating that the main point of Ca2+ escape from these vesicles was linked to the Ca2+ pump. It is discussed that sulfated polysaccharides may physiologically increase the steady-state level of Ca2+ in the cytosol by inhibiting the Ca2+ pumps in a K+ (and tissue) regulated way. It is suggested that heparin regulates the plasma membrane Ca2+-ATPase by binding to the E2 conformer.
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