Introducing Rigidity into the GFP Chromophore via a Boron Bridge: Insights and Application in Two-Photon Imaging

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Abstract

A new family of azaborine fluorophores, consisting of ten compounds, has been developed that mimics the chromophore of green fluorescent protein, with conformation locked by a hydroxyboron bridge. These fluorophores exhibit fluorescence Stokes shifts up to 100 nm (0.56 eV) and high brightness (>104 M–1 cm–1) in the 408–525 nm range. Their potential utility for sensing applications was demonstrated by constructing zinc sensors capable of detecting 100 micromolar Zn2+ concentrations in biological systems with two-photon microscopy.

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Csomos, A., Petrilla, B., Cseri, L., Turczel, G., Steckel, A., Matuscsák, A., … Mucsi, Z. (2025). Introducing Rigidity into the GFP Chromophore via a Boron Bridge: Insights and Application in Two-Photon Imaging. Organic Letters, 27(13), 3128–3133. https://doi.org/10.1021/acs.orglett.5c00284

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