Sign In

Ligand-Gated Ion Channel Receptor: Gating Mechanism

Ligand-gated ion channels are transmembrane proteins that play a vital role in intercellular communication and functions of the nervous system. They allow the influx of ions across the membrane once the neurotransmitter binds, allowing the subsequent transmission of electrical excitation across the neurons. Other ligand-gated ion channels, like the γ-aminobutyric acid (GABA) receptor, permit anions like chloride into the cells on the binding of the GABA molecule. Their entry into the cell lowers the membrane potential, i.e., hyperpolarizes the membrane, thereby inhibiting the firing of new action potentials and limiting the nerve impulse conduction. It forms the basis of the sedative effects of anesthetic agents whose binding promotes calming and induces sleep.

Ligand-gated ion channels fall into three subfamilies:

  • The 'Cys-loop' subfamily includes nicotinic acetylcholine receptors, GABA, glycine, and 5-hydroxytryptamine receptors. These are pentameric receptors, and each subunit comprises four transmembrane α-helices. Both agonists and antagonists target neurotransmitter binding sites or allosteric sites to regulate the gating of these receptors.
  • The second subfamily is the 'Pore-loop' channels that include ionotropic glutamate receptors such as N-methyl D-aspartate (NMDA), α-amino-3-hydroxy-5-methyl-4-isoxazole propionic acid (AMPA), and kainate receptors that bind the neurotransmitter glutamate. These tetrameric receptors have transmembrane loops instead of helices, forming an ion-conducting pore.
  • Lastly, the 'ATP-gated' P2X channels consist of cation-permeable ligand-gated ion channels that open on the binding of ATP. They are trimeric receptors having two transmembrane domains per subunit. They are vital in physiological processes like heart and skeletal muscle contraction and pain mediation.

Clinical relevance

In the case of Alzheimer's disease, the treatment that involves cholinesterase inhibitors prevents the breakdown of the neurotransmitter acetylcholine and prolongs its circulation, helping to improve cognitive functions. Treatment with glutamate receptor antagonists, like memantine, helps manage the memory loss and brain damage associated with the disease. Here, the antagonist binds to the ligand site of the neurotransmitter glutamate, stopping the influx of calcium ions and thereby preventing nerve damage due to prolonged cell excitability. The uncompetitive nature of this antagonist allows the site of communication between two nerve cells (the synapses) to activate during the physiological release of glutamate. This leads to improved cognition and can enable patients to carry out daily activities.

Tags
Ligand gated Ion ChannelsTransmembrane ProteinsNeurotransmitter BindingGABA ReceptorHyperpolarizationSedative EffectsCys loop SubfamilyNicotinic Acetylcholine ReceptorsIonotropic Glutamate ReceptorsNMDA ReceptorAMPA ReceptorATP gated ChannelsCholinesterase InhibitorsAlzheimer s DiseaseGlutamate Receptor Antagonists

From Chapter undefined:

article

Now Playing

Ligand-Gated Ion Channel Receptor: Gating Mechanism

Related Videos

1.4K Views

article

Principles of Drug Action

Related Videos

4.3K Views

article

Targets for Drug Action: Overview

Related Videos

2.8K Views

article

Signal Transduction: Overview

Related Videos

7.4K Views

article

Transducer Mechanism: G Protein–Coupled Receptors

Related Videos

1.1K Views

article

Transducer Mechanism: Enzyme-Linked Receptors

Related Videos

1.6K Views

article

Transducer Mechanism: Nuclear Receptors

Related Videos

829 Views

article

Dose-Response Relationship: Overview

Related Videos

1.6K Views

article

Dose-Response Relationship: Potency and Efficacy

Related Videos

2.3K Views

article

Dose-Response Relationship: Selectivity and Specificity

Related Videos

4.5K Views

article

Therapeutic Index

Related Videos

3.0K Views

article

Drug-Receptor Interaction: Agonist

Related Videos

1.4K Views

article

Drug-Receptor Interaction: Antagonist

Related Videos

1.5K Views

article

Combined Effects of Drugs: Antagonism

Related Videos

5.4K Views

article

Combined Effects of Drugs: Synergism

Related Videos

1.5K Views

See More

JoVE Logo

Privacy

Terms of Use

Policies

Research

Education

ABOUT JoVE

Copyright © 2024 MyJoVE Corporation. All rights reserved