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      RhoA increases ASIC1a plasma membrane localization and calcium influx in pulmonary arterial smooth muscle cells following chronic hypoxia

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          Abstract

          Increases in pulmonary arterial smooth muscle cell (PASMC) intracellular Ca 2+ levels and enhanced RhoA/Rho kinase-dependent Ca 2+ sensitization are key determinants of PASMC contraction, migration, and proliferation accompanying the development of hypoxic pulmonary hypertension. We previously showed that acid-sensing ion channel 1a (ASIC1a)-mediated Ca 2+ entry in PASMC is an important constituent of the active vasoconstriction, vascular remodeling, and right ventricular hypertrophy associated with hypoxic pulmonary hypertension. However, the enhanced ASIC1a-mediated store-operated Ca 2+ entry in PASMC from pulmonary hypertensive animals is not dependent on an increase in ASIC1a protein expression, suggesting that chronic hypoxia (CH) stimulates ASIC1a function through other regulatory mechanism(s). RhoA is involved in ion channel trafficking, and levels of activated RhoA are increased following CH. Therefore, we hypothesize that activation of RhoA following CH increases ASIC1a-mediated Ca 2+ entry by promoting ASIC1a plasma membrane localization. Consistent with our hypothesis, we found greater plasma membrane localization of ASIC1a following CH. Inhibition of RhoA decreased ASIC1a plasma membrane expression and largely diminished ASIC1a-mediated Ca 2+ influx, whereas activation of RhoA had the opposite effect. A proximity ligation assay revealed that ASIC1a and RhoA colocalize in PASMC and that the activation state of RhoA modulates this interaction. Together, our findings show a novel interaction between RhoA and ASIC1a, such that activation of RhoA in PASMC, both pharmacologically and via CH, promotes ASIC1a plasma membrane localization and Ca 2+ entry. In addition to enhanced RhoA-mediated Ca 2+ sensitization following CH, RhoA can also activate a Ca 2+ signal by facilitating ASIC1a plasma membrane localization and Ca 2+ influx in pulmonary hypertension.

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          Author and article information

          Journal
          Am J Physiol Cell Physiol
          Am. J. Physiol., Cell Physiol
          ajpcell
          Am J Physiol Cell Physiol
          AJPCELL
          American Journal of Physiology - Cell Physiology
          American Physiological Society (Bethesda, MD )
          0363-6143
          1522-1563
          1 February 2018
          25 October 2017
          1 February 2019
          : 314
          : 2
          : C166-C176
          Affiliations
          Vascular Physiology Group, Department of Cell Biology and Physiology, University of New Mexico Health Sciences Center , Albuquerque, New Mexico
          Author notes
          Address for reprint requests and other correspondence: N. L. Jernigan, Dept. of Cell Biology and Physiology, University of New Mexico Health Sciences Center, MSC 08-4750, University of New Mexico, Albuquerque, NM 87131-0001 (e-mail: njernigan@ 123456salud.unm.edu ).
          Article
          PMC5866437 PMC5866437 5866437 C-00159-2017 C-00159-2017
          10.1152/ajpcell.00159.2017
          5866437
          29070491
          3783d56e-097e-4857-ae0f-a7a8c8b6a7cc
          Copyright © 2018 the American Physiological Society
          History
          : 21 July 2017
          : 17 October 2017
          : 19 October 2017
          Funding
          Funded by: HHS | NIH | National Heart, Lung, and Blood Institute (NHBLI) 10.13039/100000050
          Award ID: R01 HL-111084
          Award ID: R01 HL-132883
          Categories
          Research Article
          Pathogenic Roles of Ion Channels and Transporters
          Custom metadata
          True

          pulmonary hypertension,calcium sensitization,ASIC1 trafficking,store-operated calcium entry

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