bioRxiv · 10.1101/2020.10.09.328922
A red fluorescent protein with improved monomericity enables ratiometric voltage imaging with ASAP3
Abstract
A ratiometric genetically encoded voltage indicator (GEVI) would be desirable for tracking transmembrane voltage changes in cells that are undergoing motion. To create a high-performance ratiometric GEVI, we explored the possibility of adding a voltage-independent red fluorophore to ASAP3, a high-gain green fluorescent GEVI. We performed combinatorial multi-site mutagenesis on the cyan-excitable red fluorescent protein mCyRFP1 to enhance brightness and monomericity, creating mCyRFP3. Among red fluorescent proteins tested, mCyRFP3 proved to be the least perturbing when fused to ASAP3. We demonstrate that the red fluorescence of ASAP3-mCyRFP3 (ASAP3-R3) provides an effective reference channel to remove motion artifacts from voltage-induced changes in green fluorescence. Finally we use ASAP3-R3 to visualize membrane voltage changes throughout the cell cycle of motile cells.
Source connections
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Kim, B. B., Wu, H., Hao, Y. A., Pan, M., Chavarha, M., Westberg, M., St-Pierre, F., Wu, J. C., Lin, M.. 2020-10-10. A red fluorescent protein with improved monomericity enables ratiometric voltage imaging with ASAP3. https://doi.org/10.1101/2020.10.09.328922
Cite the original work for its findings. Save a collection to share your selection of sources.