Literature DB >> 26453519

Hydrogen peroxide-induced calcium influx in lung microvascular endothelial cells involves TRPV4.

Karthik Suresh1, Laura Servinsky1, Jose Reyes1, Syeda Baksh1, Clark Undem1, Michael Caterina2, David B Pearse1, Larissa A Shimoda3.   

Abstract

In acute respiratory distress syndrome, both reactive oxygen species (ROS) and increased intracellular calcium ([Ca(2+)]i) are thought to play important roles in promoting endothelial paracellular permeability, but the mechanisms linking ROS and [Ca(2+)]i in microvascular endothelial cells are not known. In this study, we assessed the effect of hydrogen peroxide (H2O2) on [Ca(2+)]i in mouse and human lung microvascular endothelial cells (MLMVEC and HLMVEC, respectively). We found that in both MLMVECs and HLMVECs, exogenously applied H2O2 increased [Ca(2+)]i through Ca(2+) influx and that pharmacologic inhibition of the calcium channel transient receptor potential vanilloid 4 (TRPV4) attenuated the H2O2-induced Ca(2+) influx. Additionally, knockdown of TRPV4 in HLMVEC also attenuated calcium influx following H2O2 challenge. Administration of H2O2 or TRPV4 agonists decreased transmembrane electrical resistance (TER), suggesting increased barrier permeability. To explore the regulatory mechanisms underlying TRPV4 activation by ROS, we examined H2O2-induced Ca(2+) influx in MLMVECs and HLMVECs with either genetic deletion, silencing, or pharmacologic inhibition of Fyn, a Src family kinase. In both MLMVECs derived from mice deficient for Fyn and HLMVECs treated with either siRNA targeted to Fyn or the Src family kinase inhibitor SU-6656 for 24 or 48 h, the H2O2-induced Ca(2+) influx was attenuated. Treatment with SU-6656 decreased the levels of phosphorylated, but not total, TRPV4 protein and had no effect on TRPV4 response to the external agonist, GSK1016790A. In conclusion, our data suggest that application of exogenous H2O2 increases [Ca(2+)]i and decreases TER in microvascular endothelial cells via activation of TRPV4 through a mechanism that requires the Src kinase Fyn.
Copyright © 2015 the American Physiological Society.

Entities:  

Keywords:  ARDS; ROS; TRPV4; calcium; lung injury

Mesh:

Substances:

Year:  2015        PMID: 26453519      PMCID: PMC4683318          DOI: 10.1152/ajplung.00275.2015

Source DB:  PubMed          Journal:  Am J Physiol Lung Cell Mol Physiol        ISSN: 1040-0605            Impact factor:   5.464


  70 in total

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2.  CD36 mediates H2O2-induced calcium influx in lung microvascular endothelial cells.

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Review 3.  The role of stretch-activated ion channels in acute respiratory distress syndrome: finally a new target?

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Review 6.  Ion channels of the lung and their role in disease pathogenesis.

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7.  The Yin and Yang of endothelium-derived vasodilator factors.

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Review 8.  Cytokine-Ion Channel Interactions in Pulmonary Inflammation.

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