Egfp-tagged Nuclei

EGFP-tagged nuclei are cell nuclei labeled with enhanced green fluorescent protein (EGFP), creating a visible marker for identifying nuclear location, morphology, and cell or tissue sources in biological studies. The label is produced when EGFP is genetically fused to a nuclear-targeting component, such as a nuclear localization sequence or chromatin-associated protein, directing the fluorophore into the nucleus; excitation then generates green fluorescence for microscopy or sorting. This approach supports cell-type-specific nuclear imaging, isolation of fluorescent nuclei, and downstream analysis of nuclear RNA, DNA, or chromatin. It is useful for mapping gene regulation and studying tissue organization, development, and disease-related changes.

Egfp-tagged Nuclei - 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.

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.

Affinity-based Isolation of Tagged Nuclei from Drosophila Tissues for Gene Expression Analysis

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Cited by 32 •

2014

Drosophila tissues often contain a heterogeneous mixture of cell types. To examine gene expression in specific cell types from a particular tissue, nuclei can be genetically tagged and subsequently isolated using an affinity-based approach. Isolated nuclei can be used for downstream applications such as gene expression analysis and chromatin immunoprecipitation.

Luciferase-tagged Glioma Stem Cell Model: A Lentivirus-mediated Method to Prepare Luciferase-tagged Glioma Stem Cells for In Vitro Therapeutic Studies

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2023

This video demonstrates the establishment of luciferase-tagged glioma stem cells via lentivirus-mediated gene delivery. Luciferase acts as a reporter gene and helps facilitate rapid drug screening experiments.

Gradient Centrifugation Based Purification of Nuclei: A Technique to Obtain Ultrapure Fraction of Intact Nuclei Using Density Gradient Centrifugation

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2023

In this video, we describe a simple and efficient protocol using gradient centrifugation to isolate single nuclei. Once isolated, these nuclei can be used for sequencing and genome analysis.

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