Light-activated Channels

Light-activated channels are membrane proteins that open or close in response to light, converting optical signals into changes in cellular electrical activity. In neuroscience, microbial opsins such as channelrhodopsins contain a retinal chromophore that changes configuration after absorbing photons, altering the protein’s conformation and allowing specific ions to cross the membrane. This produces rapid depolarization or hyperpolarization, depending on the channel and its ion selectivity. Used in optogenetics, these channels enable researchers to control defined populations of neurons with millisecond-scale timing, linking neural activity to behavior and circuit function while supporting studies of brain disorders and potential therapeutic strategies.

Light-activated Channels - Related Videos

Research

JoVE EoE - Neurophysiology

Optogenetic Electrophysiology Recording of Cells with Light-Dependent Ion Channels

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2025

In this video, embryonic kidney cell cultures expressing light-dependent ion channel proteins fused with a fluorescent reporter demonstrate the effect of light on ion movement. Whole-cell patch clamp is used to monitor the movement of ions.

Education

JoVE Core - Pharmacology

Antiepileptic Drugs: Potassium Channel Activators

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2024

Ezocgabine or retigabine, an antiepileptic drug of remarkable efficacy, has revolutionized the management of seizures. It is a potassium channel activator, explicitly targeting the family of Q subtype potassium channels. It enhances the transmembrane potassium currents, regulating neuronal excitability. This action stabilizes the resting membrane potential, a pivotal factor in mitigating the hyperexcitability that characterizes epilepsy. Ezogabine has gained approval as an adjunctive treatment...

Research

JoVE Journal - Neuroscience
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GABA-activated Single-channel and Tonic Currents in Rat Brain Slices

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Cited by 9 •

2011

We use the patch-clamp technique to measure GABA-activated single-channel currents (GABAA channels, GABAA receptors) and the synaptic and tonic currents they generate in neurons. Activation of the channels decreases neuronal excitability in health and disease 1,2,3,4.

Inactivation of Bacteria Using Light-Activated Flavin Mononucleotide

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2025

Source: Cheng, C., et al. Inactivation of Pathogens via Visible-Light Photolysis of Riboflavin-5′-Phosphate. J. Vis. Exp. (2022)This video demonstrates a method for evaluating the phototoxic effects of flavin mononucleotide (FMN) on pathogenic bacteria. Bacterial cultures are exposed to increasing concentrations of FMN and illuminated with visible light to generate reactive oxygen species (ROS) that damage cellular components. The surviving bacteria are then quantified to assess the...

Functional Reconstitution and Channel Activity Measurements of Purified Wildtype and Mutant CFTR Protein

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Cited by 7 •

2015

Described here is a rapid and effective procedure for functional reconstitution of purified wild-type and mutant CFTR protein that preserves activity for this chloride channel, which is defective in Cystic Fibrosis. Iodide efflux from reconstituted proteoliposomes mediated by CFTR allows studies of channel activity and the effects of small molecules.

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