Lck-rcamp2

Lck-rCaMP2 is a genetically encoded red fluorescent calcium indicator designed to report calcium dynamics at the plasma membrane, making it useful for studying localized neuronal signaling. It combines the calcium-sensitive rCaMP2 sensor with an Lck-derived membrane-targeting sequence, positioning fluorescence changes near the cell surface; calcium binding alters the sensor’s conformation and increases red fluorescence intensity. In neuroscience, Lck-rCaMP2 can visualize activity-dependent calcium influx in neurons and resolve spatially restricted signals in dendrites, axons, or synaptic regions. Its membrane localization supports studies of excitability, synaptic transmission, and the subcellular organization of calcium signaling in living cells and neural circuits.

Lck-rcamp2 - Related Videos

Research

JoVE EoE - Neuroimaging

Spontaneous Calcium Imaging for Compartment-Specific Dynamics in Astrocytes

0 Views •

2025

Source: Bannai, H., et. al., Dissection of Local Ca2+ Signals in Cultured Cells by Membrane-targeted Ca2+ Indicators. J. Vis. Exp. (2019)The video demonstrates fluorescence imaging to observe compartment-specific spontaneous calcium dynamics in astrocytes by sequentially monitoring calcium-sensitive proteins localized on the plasma membrane and endoplasmic reticulum.

Research

JoVE Journal - Immunology and Infection
Free Sample

Imaging of HIV-1 Envelope-induced Virological Synapse and Signaling on Synthetic Lipid Bilayers

0 Views •

Cited by 4 •

2012

This article describes a method to visualize formation of an HIV-1 envelope-induced virological synapse on glass supported planar bilayers by total internal reflection fluorescence (TIRF) microscopy. The method can also be combined with immunofluorescence staining to detect activation and redistribution of signaling molecules that occur during HIV-1 envelope-induced virological synapse formation.

Research

JoVE Journal - Biology
Free Sample

In-vivo Detection of Protein-protein Interactions on Micro-patterned Surfaces

0 Views •

Cited by 7 •

2010

This video shows experiments with subsequent analysis of protein-protein interactions by the use of micro-patterned surfaces. The approach offers the possibility to detect protein interactions in living cells and combines high throughput capabilities with the possibility to extract quantitative information.

Generation of Microtumors Using 3D Human Biogel Culture System and Patient-derived Glioblastoma Cells for Kinomic Profiling and Drug Response Testing

0 Views •

Cited by 20 •

2016

Patient-derived xenografts of glioblastoma multiforme can be miniaturized into living microtumors using 3D human biogel culture system. This in vivo-like 3D tumor assay is suitable for drug response testing and molecular profiling, including kinomic analysis.

A TIRF Microscopy Technique for Real-time, Simultaneous Imaging of the TCR and its Associated Signaling Proteins

0 Views •

Cited by 13 •

2012

The compartmentalization of proteins either within the plasma membrane or into intracellular locations is one regulatory mechanism that can greatly influence signaling outcomes; hence, to understand signaling it is important to study the spatial and temporal behavior of the proteins involved. We describe here a TIRF microscopy based system to study signal transduction in T cells, but is broadly applicable.

View All Results

FAQs

Related Topics