Abstract
Spin labelling enables the study of biomolecules using electron paramagnetic resonance (EPR) spectroscopy. Here, we describe the synthesis of a cysteine-reactive spin label based on a spirocyclic pyrrolidinyl nitroxide containing an iodoacetamide moiety. The spin label was shown to be highly persistent under reducing conditions while maintaining excellent EPR relaxation parameters up to a temperature of 180 K. After successful double spin labelling of a calmodulin variant, interspin distances were measured by the EPR experiment double electron-electron resonance (DEER) at 120 K.
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CITATION STYLE
Sowiński, M. P., Mocanu, E. M., Ruskin-Dodd, H., McKay, A. P., Cordes, D. B., Lovett, J. E., & Haugland-Grange, M. (2025). Sigmatropic rearrangement enables access to a highly stable spirocyclic nitroxide for protein spin labelling. Chemical Communications, 61(37), 6755–6758. https://doi.org/10.1039/d5cc00472a
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