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Guidelines for the Simulations of Nitroxide X-Band cw EPR Spectra from Site-Directed Spin Labeling Experiments Using SimLabel

Site-directed spin labeling (SDSL) combined with continuous wave electron paramagnetic resonance (cw EPR) spectroscopy is a powerful technique to reveal, at the local level, the dynamics of structural transitions in proteins. Here, we consider SDSL-EPR based on the selective grafting of a nitroxide...

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Autores principales: Etienne, Emilien, Pierro, Annalisa, Tamburrini, Ketty C., Bonucci, Alessio, Mileo, Elisabetta, Martinho, Marlène, Belle, Valérie
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9919594/
https://www.ncbi.nlm.nih.gov/pubmed/36771013
http://dx.doi.org/10.3390/molecules28031348
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author Etienne, Emilien
Pierro, Annalisa
Tamburrini, Ketty C.
Bonucci, Alessio
Mileo, Elisabetta
Martinho, Marlène
Belle, Valérie
author_facet Etienne, Emilien
Pierro, Annalisa
Tamburrini, Ketty C.
Bonucci, Alessio
Mileo, Elisabetta
Martinho, Marlène
Belle, Valérie
author_sort Etienne, Emilien
collection PubMed
description Site-directed spin labeling (SDSL) combined with continuous wave electron paramagnetic resonance (cw EPR) spectroscopy is a powerful technique to reveal, at the local level, the dynamics of structural transitions in proteins. Here, we consider SDSL-EPR based on the selective grafting of a nitroxide on the protein under study, followed by X-band cw EPR analysis. To extract valuable quantitative information from SDSL-EPR spectra and thus give a reliable interpretation on biological system dynamics, a numerical simulation of the spectra is required. However, regardless of the numerical tool chosen to perform such simulations, the number of parameters is often too high to provide unambiguous results. In this study, we have chosen SimLabel to perform such simulations. SimLabel is a graphical user interface (GUI) of Matlab, using some functions of Easyspin. An exhaustive review of the parameters used in this GUI has enabled to define the adjustable parameters during the simulation fitting and to fix the others prior to the simulation fitting. Among them, some are set once and for all (g(y), g(z)) and others are determined (A(z), g(x)) thanks to a supplementary X-band spectrum recorded on a frozen solution. Finally, we propose guidelines to perform the simulation of X-band cw-EPR spectra of nitroxide labeled proteins at room temperature, with no need of uncommon higher frequency spectrometry and with the minimal number of variable parameters.
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spelling pubmed-99195942023-02-12 Guidelines for the Simulations of Nitroxide X-Band cw EPR Spectra from Site-Directed Spin Labeling Experiments Using SimLabel Etienne, Emilien Pierro, Annalisa Tamburrini, Ketty C. Bonucci, Alessio Mileo, Elisabetta Martinho, Marlène Belle, Valérie Molecules Article Site-directed spin labeling (SDSL) combined with continuous wave electron paramagnetic resonance (cw EPR) spectroscopy is a powerful technique to reveal, at the local level, the dynamics of structural transitions in proteins. Here, we consider SDSL-EPR based on the selective grafting of a nitroxide on the protein under study, followed by X-band cw EPR analysis. To extract valuable quantitative information from SDSL-EPR spectra and thus give a reliable interpretation on biological system dynamics, a numerical simulation of the spectra is required. However, regardless of the numerical tool chosen to perform such simulations, the number of parameters is often too high to provide unambiguous results. In this study, we have chosen SimLabel to perform such simulations. SimLabel is a graphical user interface (GUI) of Matlab, using some functions of Easyspin. An exhaustive review of the parameters used in this GUI has enabled to define the adjustable parameters during the simulation fitting and to fix the others prior to the simulation fitting. Among them, some are set once and for all (g(y), g(z)) and others are determined (A(z), g(x)) thanks to a supplementary X-band spectrum recorded on a frozen solution. Finally, we propose guidelines to perform the simulation of X-band cw-EPR spectra of nitroxide labeled proteins at room temperature, with no need of uncommon higher frequency spectrometry and with the minimal number of variable parameters. MDPI 2023-01-31 /pmc/articles/PMC9919594/ /pubmed/36771013 http://dx.doi.org/10.3390/molecules28031348 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Etienne, Emilien
Pierro, Annalisa
Tamburrini, Ketty C.
Bonucci, Alessio
Mileo, Elisabetta
Martinho, Marlène
Belle, Valérie
Guidelines for the Simulations of Nitroxide X-Band cw EPR Spectra from Site-Directed Spin Labeling Experiments Using SimLabel
title Guidelines for the Simulations of Nitroxide X-Band cw EPR Spectra from Site-Directed Spin Labeling Experiments Using SimLabel
title_full Guidelines for the Simulations of Nitroxide X-Band cw EPR Spectra from Site-Directed Spin Labeling Experiments Using SimLabel
title_fullStr Guidelines for the Simulations of Nitroxide X-Band cw EPR Spectra from Site-Directed Spin Labeling Experiments Using SimLabel
title_full_unstemmed Guidelines for the Simulations of Nitroxide X-Band cw EPR Spectra from Site-Directed Spin Labeling Experiments Using SimLabel
title_short Guidelines for the Simulations of Nitroxide X-Band cw EPR Spectra from Site-Directed Spin Labeling Experiments Using SimLabel
title_sort guidelines for the simulations of nitroxide x-band cw epr spectra from site-directed spin labeling experiments using simlabel
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9919594/
https://www.ncbi.nlm.nih.gov/pubmed/36771013
http://dx.doi.org/10.3390/molecules28031348
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