Cell tracking using a photoconvertible fluorescent protein
- 3 August 2006
- journal article
- Published by Springer Nature in Nature Protocols
- Vol. 1 (2) , 960-967
- https://doi.org/10.1038/nprot.2006.96
Abstract
The tracking of cell fate, shape and migration is an essential component in the study of the development of multicellular organisms. Here we report a protocol that uses the protein Kaede, which is fluorescent green after synthesis but can be photoconverted red by violet or UV light. We have used Kaede along with confocal laser scanning microscopy to track labeled cells in a pattern of interest in zebrafish embryos. This technique allows the visualization of cell movements and the tracing of neuronal shapes. We provide illustrative examples of expression by mRNA injection, mosaic expression by DNA injection, and the creation of permanent transgenic fish with the UAS-Gal4 system to visualize morphogenetic processes such as neurulation, placode formation and navigation of early commissural axons in the hindbrain. The procedure can be adapted to other photoconvertible and reversible fluorescent molecules, including KikGR and Dronpa; these molecules can be used in combination with two-photon confocal microscopy to specifically highlight cells buried in tissues. The total time needed to carry out the protocol involving transient expression of Kaede by injection of mRNA or DNA, photoconversion and imaging is 2-8 d.Keywords
This publication has 22 references indexed in Scilit:
- Visualizing neurons one‐by‐one in vivo: Optical dissection and reconstruction of neural networks with reversible fluorescent proteinsDevelopmental Dynamics, 2006
- HuC:Kaede, a useful tool to label neural morphologies in networks in vivoGenesis, 2006
- Planar cell polarity signalling couples cell division and morphogenesis during neurulationNature, 2006
- Semi‐rational engineering of a coral fluorescent protein into an efficient highlighterEMBO Reports, 2005
- Regulated Fast Nucleocytoplasmic Shuttling Observed by Reversible Protein HighlightingScience, 2004
- An optical marker based on the UV-induced green-to-red photoconversion of a fluorescent proteinProceedings of the National Academy of Sciences, 2002
- Tracing Transgene Expression in Living Zebrafish EmbryosDevelopmental Biology, 2001
- Use of the Gal4-UAS technique for targeted gene expression in the zebrafishMechanisms of Development, 1999
- Expression of achaete-scute homolog 3 in Xenopus embryos converts ectodermal cells to a neural fate.Genes & Development, 1994
- GAL4 activates transcription in DrosophilaNature, 1988