Plant Signaling & Behavior · 2012 · 18 citations · 16 references
Cellular PharmacologyCopper ExposureCellular PhysiologyMolecular PharmacologyHyperpolarization (Biology)Intracellular Calcium ReleaseMolecular PhysiologyBiochemistrySodium HomeostasisMechanism Of ActionIon ChannelsMembrane BiologyExtracellular Calcium EntryIntracellular CalciumPharmacologyCell BiologyUlva CompressaSignal TransductionNeurophysiologyNatural SciencesPhysiologyElectrophysiologyCellular BiochemistryMedicine
The marine alga Ulva compressa exposed to 10 µM copper showed a triphasic increase of intracellular calcium with maximal levels at 2, 3 and 12 h involving the activation of ryanodine-, Ins(1,4,5)P3- and NAADP-sensitive calcium channels. In order to analyze the requirement of extracellular calcium entry for intracellular calcium release as well as the activation of voltage-dependent calcium channels (VDCC) and phospholipase C, U. compressa was treated with EGTA, a non-permeable calcium chelating agent, with verapamil, nipfedipine and diltiazem, inhibitors of L-type VDCC, and with neomycin and U731222, inhibitors of phospholipase C. The release of intracellular calcium was partially inhibited with EGTA at 2 and 3 h and completely inhibited at 12 h of copper exposure and decreased with inhibitors of L-type VDCC and phospholipase C. Thus, copper-induced intracellular calcium release depends on calcium entry and activation of L-type VDCC and phospholipase C. An integrative model of copper-induced cellular responses in U. compressa is presented.
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Zinc activates damage-sensing TRPA1 ion channels
Hongzhen Hu, Michael Bandell, Matt Petrus et al. · Nature Chemical Biology · 2009 · 219 citations · Full text