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Endothelial Angiogenesis and Barrier Function in Response to Thrombin Require Ca2+ Influx through the Na+/Ca2+ Exchanger.
Andrikopoulos, Petros; Kieswich, Julius; Harwood, Steven M; Baba, Akemichi; Matsuda, Toshio; Barbeau, Olivier; Jones, Keith; Eccles, Suzanne A; Yaqoob, Muhammad M.
Affiliation
  • Andrikopoulos P; From Translational Medicine and Therapeutics, William Harvey Research Institute, Barts and the London School of Medicine, Queen Mary's University of London, London EC1M 6BQ, United Kingdom, p.andrikopoulos@qmul.ac.uk.
  • Kieswich J; From Translational Medicine and Therapeutics, William Harvey Research Institute, Barts and the London School of Medicine, Queen Mary's University of London, London EC1M 6BQ, United Kingdom.
  • Harwood SM; From Translational Medicine and Therapeutics, William Harvey Research Institute, Barts and the London School of Medicine, Queen Mary's University of London, London EC1M 6BQ, United Kingdom.
  • Baba A; the Hyogo University of Health Sciences, 1-3-6 Minatojima, Chuo-ku, Kobe-shi, Hyogo 650-8530, Japan.
  • Matsuda T; the Laboratory of Medicinal Pharmacology, Graduate School of Pharmaceutical Sciences, Osaka University, 1-6 Yamada-oka, Suita, Osaka 565-0871, Japan, and.
  • Barbeau O; the Division of Cancer Therapeutics, Institute of Cancer Research, London SW7 3RP, United Kingdom.
  • Jones K; the Division of Cancer Therapeutics, Institute of Cancer Research, London SW7 3RP, United Kingdom.
  • Eccles SA; the Division of Cancer Therapeutics, Institute of Cancer Research, London SW7 3RP, United Kingdom.
  • Yaqoob MM; From Translational Medicine and Therapeutics, William Harvey Research Institute, Barts and the London School of Medicine, Queen Mary's University of London, London EC1M 6BQ, United Kingdom.
J Biol Chem ; 290(30): 18412-28, 2015 Jul 24.
Article in En | MEDLINE | ID: mdl-25979335
ABSTRACT
Thrombin acts on the endothelium by activating protease-activated receptors (PARs). The endothelial thrombin-PAR system becomes deregulated during pathological conditions resulting in loss of barrier function and a pro-inflammatory and pro-angiogenic endothelial phenotype. We reported recently that the ion transporter Na(+)/Ca(2+) exchanger (NCX) operating in the Ca(2+)-influx (reverse) mode promoted ERK1/2 activation and angiogenesis in vascular endothelial growth factor-stimulated primary human vascular endothelial cells. Here, we investigated whether Ca(2+) influx through NCX was involved in ERK1/2 activation, angiogenesis, and endothelial barrier dysfunction in response to thrombin. Reverse-mode NCX inhibitors and RNAi-mediated NCX1 knockdown attenuated ERK1/2 phosphorylation in response to thrombin or an agonist of PAR-1, the main endothelial thrombin receptor. Conversely, promoting reverse-mode NCX by suppressing Na(+)-K(+)-ATPase activity enhanced ERK1/2 activation. Reverse-mode NCX inhibitors and NCX1 siRNA suppressed thrombin-induced primary human vascular endothelial cell angiogenesis, quantified as proliferation and tubular differentiation. Reverse-mode NCX inhibitors or NCX1 knockdown preserved barrier integrity upon thrombin stimulation in vitro. Moreover, the reverse-mode NCX inhibitor SEA0400 suppressed Evans' blue albumin extravasation to the lung and kidneys and attenuated edema formation and ERK1/2 activation in the lungs of mice challenged with a peptide activator of PAR-1. Mechanistically, thrombin-induced ERK1/2 activation required NADPH oxidase 2-mediated reactive oxygen species (ROS) production, and reverse-mode NCX inhibitors and NCX1 siRNA suppressed thrombin-induced ROS production. We propose that reverse-mode NCX is a novel mechanism contributing to thrombin-induced angiogenesis and hyperpermeability by mediating ERK1/2 activation in a ROS-dependent manner. Targeting reverse-mode NCX could be beneficial in pathological conditions involving unregulated thrombin signaling.
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Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Membrane Glycoproteins / Calcium / Reactive Oxygen Species / Neovascularization, Physiologic / NADPH Oxidases / Sodium-Calcium Exchanger Limits: Animals / Humans Language: En Journal: J Biol Chem Year: 2015 Document type: Article

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Membrane Glycoproteins / Calcium / Reactive Oxygen Species / Neovascularization, Physiologic / NADPH Oxidases / Sodium-Calcium Exchanger Limits: Animals / Humans Language: En Journal: J Biol Chem Year: 2015 Document type: Article