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March 3, 2026Russian Journal of Bioorganic Chemistry0 citations

Synthesis and Study of the Optical Properties of a New Green Fluorescent Protein Chromophore Analogue with an sp-Hybridized Carbon Fragment

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SKS. A. KrasnovaAMA. A. MikhaylovMBM. S. Baranov

Key Points

  • The new chromophore analogue exhibits a bathochromic shift in its spectral characteristics, enhancing optical performance.
  • This analogue achieved a significant alteration in the absorption and emission maxima, showcasing effective fluorescence.
  • Synthesis followed a defined method involving Sonogashira coupling and cycloaddition for optimal results in compound formation.
  • Highlights the promise of this compound in applications as a fluorogenic dye in living systems, indicating its potential utility.

Abstract

Objective: A new green fluorescent protein chromophore analogue with an sp-hybridized carbon fragment was presented. Methods: The introduction of a protecting group, Sonogashira coupling, and subsequent hydrolysis were used for the synthesis of aldehyde. The formation of imine of the corresponding aldehyde with the subsequent 3+2 cycloaddition and deprotection were used for the synthesis of arylpropynylidene-imidazolone. The optical properties of the new compound were studied. Results and Discussion: We discovered that the new substance, which has a triple bond in conjugation with the aromatic part of the molecule, is characterized by a bathochromic shift of the absorption and emission maxima. The resulting compound is comparable in its spectral characteristics with the previously synthesized arylallylidene-imidazolone. Conclusions: We designed a new green fluorescent protein chromophore analogue with an sp-hybridized carbon fragment that demonstrates a bathochromic shift of spectral maxima. The new substance can be potentially used as a fluorogenic dye for living systems.

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Cite This Study

Krasnova et al. (2026) studied this question.

synapsesocial.com/papers/69a75e4ac6e9836116a28bd8https://doi.org/10.1134/s1068162025603076
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