Centrin-egfp

Centrin-EGFP is a fluorescent fusion protein that labels centrioles, centrosomes, and related microtubule-organizing structures in living cells, making their organization and dynamics visible. It combines centrin, a calcium-binding protein associated with centrosomal structures, with enhanced green fluorescent protein (EGFP); when expressed in cells, the fusion localizes to these compartments and produces a detectable fluorescent signal. In neuroscience, Centrin-EGFP supports microscopy-based studies of centrosome positioning, duplication, and behavior during neuronal development, migration, and differentiation. By revealing centrosomal dynamics in real time, it helps researchers investigate how cellular architecture and microtubule organization influence neuronal structure and function.

Centrin-egfp - Related Videos

Research

JoVE Journal - Biology

Easy Measurement of Diffusion Coefficients of EGFP-tagged Plasma Membrane Proteins Using k-Space Image Correlation Spectroscopy

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Cited by 37 •

2014

This paper provides a step by step guide to the fluctuation analysis technique k-Space Image Correlation Spectroscopy (kICS) for measuring diffusion coefficients of fluorescently labeled plasma membrane proteins in live mammalian cells.

Development of Leishmania Species Strains with Constitutive Expression of eGFP

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2023

Here, we describe the methodology used for generating L. panamensis and L. donovani strains expressing the gene for eGFP as a stable integrated transgene using the pLEXSY system. Transfected parasites were cloned by limiting dilution, and clones with the highest fluorescence intensity in both species were selected for further use in drug screening assays.

Studying Membrane Protein Trafficking in Drosophila Photoreceptor Cells Using eGFP-Tagged Proteins

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Cited by 1 •

2022

Here, non-invasive methods are described for localization of photoreceptor membrane proteins and assessment of retinal degeneration in the Drosophila compound eye using eGFP fluorescence.

Research

JoVE Journal - Biology
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Volumetric Imaging and Analysis of Primary Cilia in Musculoskeletal Tissue using the ARL13B-CENTRIN-2 Mouse Model

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Cited by 1 •

2025

This method describes the exploitation of the endogenous signal in an ARL13B-CENTRIN-2 transgenic mouse model to image primary cilia in situ, in three dimensions across large areas of mineralized tissue, from tissue collection to analysis of cilia organization. This protocol may also be applied to other types of tissues.

Reliable Identification of Living Dopaminergic Neurons in Midbrain Cultures Using RNA Sequencing and TH-promoter-driven eGFP Expression

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Cited by 9 •

2017

In Parkinson's Disease (PD), Substantia Nigra (SNc) dopaminergic neurons degenerate, leading to motor dysfunction. Here we report a protocol for culturing ventral midbrain neurons from a mouse expressing eGFP driven by a Tyrosine Hydroxylase (TH) promoter sequence, harvesting individual fluorescent neurons from the cultures, and measuring their transcriptome using RNA-seq.

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