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Updated: Jun 23, 2025

Fluorescent Labeling of COS-7 Expressing SNAP-tag Fusion Proteins for Live Cell Imaging
Published on: May 17, 2010
Tissue-specific and endogenous protein labeling with split fluorescent proteins.
Gloria D Ligunas1, German F Paniagua2, Jesselynn LaBelle1
1Department of Molecular and Cell Biology, University of California, Merced, CA, USA; Quantitative and Systems Biology Graduate Group, University of California, Merced, CA, USA.
Researchers developed a novel split fluorescent protein system for precise, tissue-specific protein labeling in zebrafish. This method overcomes limitations of traditional techniques, enabling dynamic biological process studies at the whole organism level.
Area of Science:
- Molecular Biology
- Genetics
- Zebrafish Model Systems
Background:
- Genetically encoded fluorescent proteins are vital for studying dynamic biological processes.
- Current methods for fluorescent protein fusion expression have limitations, particularly in whole organisms, including overexpression artifacts and technical difficulties with endogenous tagging.
Purpose of the Study:
- To overcome limitations of existing protein labeling techniques.
- To develop a method for tissue-specific and endogenous protein labeling in zebrafish using a split fluorescent protein system.
Main Methods:
- Utilized the split mNeonGreen2 (split-mNG2) system, comprising mNG21-10 and mNG211 fragments.
- Expressed mNG21-10 using tissue-specific promoters via standard transgenesis.
- Inserted mNG211 into endogenous genes of interest using CRISPR/Cas9 gene editing.
- Co-expressed both fragments to achieve self-assembly into a fluorescent complex.
Main Results:
- Successfully achieved differential labeling of cytoskeleton genes (tubb4b and krt8) in various zebrafish tissues using the split-mNG2 system.
- Demonstrated the ability to manipulate protein localization by anchoring the mNG21-10 component to specific cellular compartments.
- Confirmed that individual mNG2 fragments are non-fluorescent, with fluorescence only upon co-expression and assembly.
Conclusions:
- The split-mNG2 system provides a robust strategy for tissue-specific and endogenous protein labeling in zebrafish.
- This approach overcomes significant drawbacks of traditional protein fusion expression methods.
- The system offers broad utility for diverse applications in cell and developmental biology research.
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