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Literatura académica sobre el tema "Marqueurs nitroxydes"
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Artículos de revistas sobre el tema "Marqueurs nitroxydes"
Brasch, R. "Influence de la structure chimique sur les caractéristiques de relaxation magnétique de nitroxyles marqueurs de spin". European Journal of Medicinal Chemistry 24, n.º 4 (agosto de 1989): 335–40. http://dx.doi.org/10.1016/0223-5234(89)90075-5.
Texto completoTesis sobre el tema "Marqueurs nitroxydes"
El-Hassan, Inas. "Synthèse de N-aryl-C, C-dialkoxycarbonylnitrones et étude par RPE de leur conversion en nitroxydes". Aix-Marseille 1, 2006. http://www.theses.fr/2006AIX11033.
Texto completoPierro, Annalisa. "Protein structural dynamics in bacteria via nitroxide-based SDSL-EPR spectroscopy : from method improvements to in-cell studies". Electronic Thesis or Diss., Aix-Marseille, 2021. http://theses.univ-amu.fr.lama.univ-amu.fr/211116_PIERRO_290xrxu60ryzjfl293g970fjmdnl_TH%20(1).pdf.
Texto completoThe study of biomolecules in their native environment has been one of the main goals of structural biology in the last decade. As a result, we are assisting to a remarkable increase of new "in-cell" approaches, like Cryo-ET, FRET and NMR. Among these approaches, Site-Directed Spin Labeling (SDSL) coupled to Electron Paramagnetic Resonance (EPR) spectroscopy shows competitive and advantageous features to capture protein dynamics inside cells. In particular, nitroxide-based SDSL-EPR combines the advantages of high sensitivity and the lack of size constraints on the biomolecule of interest with the ability to capture protein structural transitions and interactions at physiological temperature. Despite the methodological advancements of the technique that have allowed the community to obtain increasingly relevant results, progresses still need to be done.In this work, the main limitation of nitroxide-based SDSL-EPR has been addressed. In the first time, we focused on the development of delivery methods to introduce the labeled protein in bacterial cells. Next, the stability of nitroxide labels in reducing environments and in-cell has been assessed, monitoring in parallel the viability of the cells during the EPR measurements. Thanks to the results achieved in this methodological part, we were able to study the structural dynamics of two flexible chaperone proteins directly in bacterial cells: NarJ from Escherichia coli and UreG from Sporosarcina pasteurii. Finally, to go further in understanding the impact of the cellular environment on the protein dynamics, the data obtained in cellular context were compared with those obtained in vitro or in a cell-mimicking environment
Le, Breton Nolwenn. "Nouvelles approches pour le marquage de spin suivi par spectroscopie de résonance paramagnétique électronique : application à l'étude de la dynamique des protéines". Electronic Thesis or Diss., Aix-Marseille, 2014. http://www.theses.fr/2014AIXM4744.
Texto completoThis thesis focuses on the development of new approaches for site-directed spin labeling followed by EPR spectroscopy. This technique is well suited to monitor the structural dynamics of proteins. The insertion of a nitroxide radical, in one (or several) selected site(s) of a protein, allows probing the structure of the protein using different EPR spectroscopy approaches (continuous wave and pulsed).In a first part, this technique has been applied to characterize the structural dynamics of the yeast IF1, an inhibitory peptide of the ATP-synthase. Using EPR and circular dichroïsm spectroscopies we showed that yeast IF1 dimerizes by its central part and that the C-terminal part remains disordered.The second part is more methodological and the aim is to study and characterize a newly synthesized spin label in order to expand the potential of site-directed spin labeling. In particular, the technique is limited by the poor spectral diversity offered by the available labels (three lines). The new label gives a six lines EPR spectrum thanks to the presence of a magnetic nucleus in the environment of the radical. Grafted on a model protein, we demonstrated that this new label is as able as classical ones to report on structural variations. The superposition of the spectral signatures (three lines + six lines) showed that it is possible to differentiate the two spectral signatures and to probe two sites of a protein and its partner simultaneously
Le, Breton Nolwenn. "Nouvelles approches pour le marquage de spin suivi par spectroscopie de résonance paramagnétique électronique : application à l'étude de la dynamique des protéines". Thesis, Aix-Marseille, 2014. http://www.theses.fr/2014AIXM4744/document.
Texto completoThis thesis focuses on the development of new approaches for site-directed spin labeling followed by EPR spectroscopy. This technique is well suited to monitor the structural dynamics of proteins. The insertion of a nitroxide radical, in one (or several) selected site(s) of a protein, allows probing the structure of the protein using different EPR spectroscopy approaches (continuous wave and pulsed).In a first part, this technique has been applied to characterize the structural dynamics of the yeast IF1, an inhibitory peptide of the ATP-synthase. Using EPR and circular dichroïsm spectroscopies we showed that yeast IF1 dimerizes by its central part and that the C-terminal part remains disordered.The second part is more methodological and the aim is to study and characterize a newly synthesized spin label in order to expand the potential of site-directed spin labeling. In particular, the technique is limited by the poor spectral diversity offered by the available labels (three lines). The new label gives a six lines EPR spectrum thanks to the presence of a magnetic nucleus in the environment of the radical. Grafted on a model protein, we demonstrated that this new label is as able as classical ones to report on structural variations. The superposition of the spectral signatures (three lines + six lines) showed that it is possible to differentiate the two spectral signatures and to probe two sites of a protein and its partner simultaneously
Cinget, Francis. "Double marquage par spins en série D-glucose : perturbation du T1 en RMN 13C et 19F par un radical nitroxyde : sonde de distances intramoléculaires". Grenoble 1, 1990. http://www.theses.fr/1990GRE10126.
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