Lifeact-mcherry

LifeAct-mCherry is a genetically encoded fluorescent probe that labels filamentous actin, enabling researchers to visualize the cytoskeleton in living cells. It combines the 17-amino-acid LifeAct peptide, which binds F-actin, with mCherry, a red fluorescent protein that emits light when excited at suitable wavelengths. After expression in cultured cells or experimental models, the fusion protein reveals actin organization and remodeling through fluorescence microscopy while allowing observation over time. In medicine, LifeAct-mCherry supports studies of cell migration, adhesion, shape changes, and cytoskeletal responses relevant to wound healing, cancer invasion, immune-cell function, and tissue development. Its use can clarify how altered actin dynamics contribute to disease and therapeutic responses.

Lifeact-mcherry - Related Videos

Research

JoVE Journal - Environment

Using Tg(Vtg1:mcherry) Zebrafish Embryos to Test the Estrogenic Effects of Endocrine Disrupting Compounds

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Cited by 1 •

2020

Present here is a detailed protocol for the use of zebrafish embryos Tg(vtg1: mCherry) for the detection of estrogenic effects. The protocol covers the propagation of the fish and treatment of embryos, and emphasizes the detection, documentation, and the evaluation of fluorescent signals induced by endocrine disrupting compounds (EDC).

Research

JoVE Journal - Biochemistry
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Live-cell Imaging of Endocytic Transport using Functionalized Nanobodies in Cultured Cells

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Cited by 1 •

2025

Endocytic and retrograde transport of proteins from the plasma membrane to the trans-Golgi network is essential to maintaining membrane homeostasis and regulating signaling. Here, we describe a method to image and quantify endocytic transport of transmembrane cargo proteins by live-cell microscopy using derivatized anti-GFP nanobodies in HeLa cells.

Calcium Imaging in Individual Neurons Regulating Egg-Laying Behavior in Caenorhabditis elegans

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2025

This video demonstrates a technique for calcium imaging in individual neurons of behaving Caenorhabditis elegans using genetically encoded fluorescent reporter proteins. It outlines the steps involved in imaging worm movement and measuring reporter fluorescence ratios from neurons to correlate intracellular calcium levels with neuronal activity and behavioral changes during egg-laying.

Rapid, Seamless Generation of Recombinant Poxviruses using Host Range and Visual Selection

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Cited by 11 •

2020

This is a method to generate “scarless” recombinant vaccinia viruses using host-range selection and visual identification of recombinant viruses.

Light-mediated Reversible Modulation of the Mitogen-activated Protein Kinase Pathway during Cell Differentiation and Xenopus Embryonic Development

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Cited by 7 •

2017

This protocol describes an optogenetic strategy to modulate mitogen-activated protein kinase (MAPK) activity during cell differentiation and Xenopus embryonic development. This method allows for the reversible activation of the MAPK signaling pathway in mammalian cell culture and in multicellular live organisms, like Xenopus embryos, with high spatial and temporal resolution.

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