Distance determination between low-spin ferric haem and nitroxide spin label using DEER: the neuroglobin case

This work demonstrates for the first time the feasibility of using double electron-electron resonance (DEER) to determine the inter-spin distance between nitroxide spin labels and low-spin (S = 1/2) ferric haem centres. For these means, two human neuroglobin variants were spin labelled leading to si...

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Published inMolecular physics Vol. 111; no. 18-19; pp. 2855 - 2864
Main Authors Ezhevskaya, M., Bordignon, E., Polyhach, Y., Moens, L., Dewilde, S., Jeschke, G., Van Doorslaer, S.
Format Journal Article
LanguageEnglish
Published Abingdon Taylor & Francis 01.10.2013
Taylor & Francis Ltd
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Summary:This work demonstrates for the first time the feasibility of using double electron-electron resonance (DEER) to determine the inter-spin distance between nitroxide spin labels and low-spin (S = 1/2) ferric haem centres. For these means, two human neuroglobin variants were spin labelled leading to singly labelled haem proteins with the nitroxide label on one of the natural Cys residues (Cys55 or Cys120). Room-temperature electron paramagnetic resonance was used to characterise the mobility of the nitroxide labels and X- and Q-band DEER experiments were performed to detect nitroxide-haem distances. Effects of residual nuclear modulations in the DEER traces were carefully evaluated. The DEER-derived distances were compared with theoretical predictions from an X-ray diffraction structure of human neuroglobin using a rotamer library approach as well as with distance information obtained from electron relaxation measurements. The structural biological implications of the spin-labelled side chains' dynamics and of the obtained distances are also discussed.
Bibliography:ObjectType-Article-2
SourceType-Scholarly Journals-1
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content type line 23
ISSN:0026-8976
1362-3028
DOI:10.1080/00268976.2013.813592