Scientific article
OA Policy
English

Specificity and reactivity of bromoacrylaldehyde spin labels

Published inJournal of magnetic resonance, vol. 380, 107953
Publication date2025-11
Abstract

Electron paramagnetic resonance (EPR) spectroscopy in combination with site-directed spin labelling provides information on structure and dynamics of biomolecules. Increasing the availability of spin labels with different properties is an elegant way to foster a more accurate analysis of the EPR data in relation to the biological problem investigated. In this study, we present a comparative investigation of labelling efficiency, surface accessibility, site specificity and width of the distance distributions obtained on two proteins with the nitroxide-based bromoacrylaldehyde spin label (BASL) versus the two commercial spin labels MTSL (methanethiosulfonate spin label) and MAP (maleimido proxyl). Based on the predicted distances from a rotamer library approach and on the experimental distance distributions, BASL is shown to provide generally narrower distance distributions compared to the other nitroxide labels. The exquisite surface specificity of BASL with respect to MAP could be successfully exploited to selectively label surface cysteines in proteins containing a high number of native cysteines. In addition, the distinct site-reactivity of BASL and MAP towards two surface-exposed cysteines was leveraged for orthogonal labelling strategies with nitroxide and gadolinium labels.

Research groups
Citation (ISO format)
GENDREIZIG, Dominik et al. Specificity and reactivity of bromoacrylaldehyde spin labels. In: Journal of magnetic resonance, 2025, vol. 380, p. 107953. doi: 10.1016/j.jmr.2025.107953
Main files (1)
Article (Published version)
Identifiers
Journal ISSN1090-7807
1views
0downloads

Technical informations

Creation17/12/2025 18:12:50
First validation10/08/2026 10:06:46
Update10/08/2026 10:06:46
Status update10/08/2026 10:06:46
Last indexation10/08/2026 10:06:48
All rights reserved by Archive ouverte UNIGE and the University of GenevaunigeBlack