bioRxiv · 10.64898/2026.04.12.718060
Long-Stokes-Shift mScarlet3 as a Structural Marker for Two-Photon Imaging
Abstract
Two-photon imaging with genetically encoded sensors is widely used to monitor neurophysiology. An additional fluorescent protein can provide anatomical landmarks for cell-type identification and motion detection. However, monomeric red fluorescent proteins often require a dedicated excitation laser. We made transgenic Drosophila with a long-Stokes-shift mScarlet variant (LSSmScarlet3) to image alongside green sensors with a single 920-nm laser. We describe excitation and emission spectra of the expressed protein and show robust fluorescence at 920 nm in vitro and in vivo with minimal channel crosstalk. This approach can reduce equipment complexity and cost while placing functional calcium dynamics in their anatomical context.
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Xu, S., Zhang, X., Cheung, K. Y., Mai, Y., Wu, Y., Claridge-Chang, A.. 2026-04-15. Long-Stokes-Shift mScarlet3 as a Structural Marker for Two-Photon Imaging. https://doi.org/10.64898/2026.04.12.718060
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