C1v1 Eyfp Opsin

C1V1-EYFP is a genetically encoded optogenetic opsin, consisting of a red-shifted microbial rhodopsin fused to enhanced yellow fluorescent protein (EYFP), that enables light-based control and visualization of excitable cells. When illuminated with green-to-yellow light, C1V1 opens a light-gated cation channel, allowing positively charged ions to enter and depolarize the neuronal membrane. In neuroscience, researchers use this actuator to activate selected neurons with precise timing while tracking expression through EYFP fluorescence, supporting studies of circuit connectivity, neural coding, behavior, and causal relationships between neuronal activity and brain function.

C1v1 Eyfp Opsin - Related Videos

Research

JoVE Journal - Biology

Time-Lapse Video Microscopy for Assessment of EYFP-Parkin Aggregation as a Marker for Cellular Mitophagy

0 Views •

Cited by 4 •

2016

Herein, we describe in detail a time-lapse video microscopy approach to measuring the temporal recruitment of EYFP-Parkin during the selective removal of damaged mitochondria. This dynamic process of EYFP-Parkin-dependent removal of damaged mitochondria can be used as an indicator of cellular health under different experimental conditions.

Mass Spectrometry Analysis to Identify Ubiquitylation of EYFP-tagged CENP-A (EYFP-CENP-A)

0 Views •

Cited by 2 •

2020

CENP-A ubiquitylation is an important requirement for CENP-A deposition at the centromere, inherited through dimerization between cell division, and indispensable to cell viability. Here we describe mass spectrometry analysis to identify ubiquitylation of EYFP-tagged CENP-A (EYFP-CENP-A) protein.

Methodology for Studying Interactions of Vitamin A Membrane Receptors and Opsin Protein with their Ligands in Generating the Retinylidene Protein

0 Views •

Cited by 3 •

2024

Here, we describe two quantitative methods for studying the protein-ligand interactions of vitamin A membrane receptors and photoreceptor opsin with their respective physiological ligands.

Research

JoVE Journal - Neuroscience
Free Sample

Laser-scanning Photostimulation of Optogenetically Targeted Forebrain Circuits

0 Views •

Cited by 6 •

2013

We describe a method for characterizing the functional topography and synaptic properties of forebrain circuits using an optogenetic approach to photostimulate neuronal populations in vitro.

Using Affordable LED Arrays for Photo-Stimulation of Neurons

0 Views •

Cited by 7 •

2011

Adult-born neurons expressing ChR2 can be manipulated in slice electrophysiological preparations in order to examine their contribution towards the function of olfactory neural circuits.

View All Results

FAQs

Related Topics