| Literature DB >> 31322814 |
Olesya A Krumkacheva1,2, Ivan O Timofeev1,2, Larisa V Politanskaya3,2, Yuliya F Polienko3,2, Evgeny V Tretyakov3,2, Olga Yu Rogozhnikova3,2, Dmitry V Trukhin3,2, Victor M Tormyshev3,2, Alexey S Chubarov4,2, Elena G Bagryanskaya3,2, Matvey V Fedin1,2.
Abstract
Precise nanoscale distance measurements by pulsed electron paramagnetic resonance (EPR) spectroscopy play a crucial role in structural studies of biomolecules. The properties of the spin labels used in this approach determine the sensitivity limits, attainable distances, and proximity to biological conditions. Herein, we propose and validate the use of photoexcited fullerenes as spin labels for pulsed dipolar (PD) EPR distance measurements. Hyperpolarization and the narrower spectrum of fullerenes compared to other triplets (e.g., porphyrins) boost the sensitivity, and superior relaxation properties allow PD EPR measurements up to a near-room temperature. This approach is demonstrated using fullerene-nitroxide and fullerene-triarylmethyl pairs, as well as a supramolecular complex of fullerene with nitroxide-labeled protein. Photoexcited triplet fullerenes can be considered as new spin labels with outstanding spectroscopic properties for future structural studies of biomolecules.Entities:
Keywords: EPR spectroscopy; PELDOR; distance measurements; fullerenes; spin labels
Year: 2019 PMID: 31322814 DOI: 10.1002/anie.201904152
Source DB: PubMed Journal: Angew Chem Int Ed Engl ISSN: 1433-7851 Impact factor: 15.336