Publication | Open Access
Detection of correlated conformational fluctuations in intrinsically disordered proteins through paramagnetic relaxation interference
32
Citations
20
References
2015
Year
Relaxation ProcessCorrelated Conformational FluctuationsMagnetic ResonanceMolecular BiologyProtein FoldingNmr TechniqueElectron Paramagnetic ResonanceDirect ObservationBiophysicsRelaxometryBiochemistryConformational StudyStructural BiologyNovel MethodologySpintronicsDisordered ProteinsNatural SciencesDynamic Nuclear PolarizationProtein NmrParamagnetic Relaxation InterferenceMedicine
Functionally relevant conformational states of intrinsically disordered proteins (IDPs) are typically concealed in a vast space of fast interconverting structures. Here we present a novel methodology, NMR-based paramagnetic relaxation interference (PRI), that allows for direct observation of concerted motions and cooperatively folded sub-states in IDPs. The proposed NMR technique is based on the exploitation of cross correlated electron-nuclear dipolar relaxation interferences in doubly spin-labeled proteins and probes the transient spatial encounter of electron-nucleus spin pairs.
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