Header menu link for other important links
X
Quercetin inhibits acid-sensing ion channels through a putative binding site in the central vestibular region
Published in Elsevier Ltd
2017
PMID: 28237818
Volume: 348
   
Pages: 264 - 272
Abstract
Acid-sensing ion channels (ASICs) are associated with many pathophysiological processes, such as neuronal death during ischemic stroke, epileptic seizure and nociception. However, there is a dearth of ASIC-specific therapeutic blockers. Here we report that quercetin, a plant flavonoid, which is known for its neuroprotective effect, reversibly inhibits homomeric rat ASIC1a, ASIC2a and ASIC3 with an IC50 of about 2 µM. Also, quercetin prevents low pH-induced intracellular calcium rise and cell death in HEK-293 cells, which have endogenous expression of ASIC1a and 2a. The inhibitory effect of quercetin on ASICs is not due to membrane perturbation, as it did not have any effect on other channels, like NMDA receptor, GABAA receptor and P2X4 receptor. Unlike quercetin, another flavonoid resveratrol had no effect on ASIC1a. Computational analysis revealed that quercetin binds to the channel in a cavity at the central vestibule, lined by several charged residues like Q276, R369, E373 and E416 in ASIC1a. Mutation of Arg369 to Ala or Glu416 to Gln abolished the inhibitory effect of quercetin on rat ASIC1a completely, while Glu373 to Gln showed reduced sensitivity. Our results raise the possibility of using quercetin for targeting ASICs in vivo. © 2017 IBRO
About the journal
JournalData powered by TypesetNeuroscience
PublisherData powered by TypesetElsevier Ltd
ISSN03064522
Open AccessNo
Concepts (49)
  •  related image
    ACID SENSING ION CHANNEL
  •  related image
    ACID SENSING ION CHANNEL 1A
  •  related image
    ACID SENSING ION CHANNEL 2A
  •  related image
    ACID SENSING ION CHANNEL 3
  •  related image
    Alanine
  •  related image
    Arginine
  •  related image
    Calcium
  •  related image
    Glutamic acid
  •  related image
    Glutamine
  •  related image
    Quercetin
  •  related image
    Resveratrol
  •  related image
    Unclassified drug
  •  related image
    ACID SENSING ION CHANNEL
  •  related image
    ACID SENSING ION CHANNEL BLOCKING AGENT
  •  related image
    Animal cell
  •  related image
    Article
  •  related image
    Binding site
  •  related image
    Calcium cell level
  •  related image
    Cell death
  •  related image
    Controlled study
  •  related image
    Drug protein binding
  •  related image
    Drug sensitivity
  •  related image
    DRUG SPECIFICITY
  •  related image
    Drug targeting
  •  related image
    Embryo
  •  related image
    Gene mutation
  •  related image
    Human
  •  related image
    Human cell
  •  related image
    IC50
  •  related image
    Molecular docking
  •  related image
    Nonhuman
  •  related image
    Protein expression
  •  related image
    Animal
  •  related image
    Cho cell line
  •  related image
    Cricetulus
  •  related image
    Drug effects
  •  related image
    Hek293 cell line
  •  related image
    Metabolism
  •  related image
    Molecular model
  •  related image
    Nerve cell
  •  related image
    ACID SENSING ION CHANNEL BLOCKERS
  •  related image
    ACID SENSING ION CHANNELS
  •  related image
    Animals
  •  related image
    Binding sites
  •  related image
    Cho cells
  •  related image
    Hek293 cells
  •  related image
    Humans
  •  related image
    Models, molecular
  •  related image
    Neurons