A rigid disulfide-linked nitroxide side chain simplifies the quantitative analysis of PRE data
Autor: | Nicolas L. Fawzi, Kálmán Hideg, Nicholas J. Anthis, Wayne L. Hubbell, Tamás Kálai, Mark R. Fleissner, G. Marius Clore |
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Rok vydání: | 2011 |
Předmět: |
Models
Molecular Nitroxide mediated radical polymerization Protein Conformation MTSL Biochemistry Article law.invention Cyclic N-Oxides chemistry.chemical_compound Protein structure Nuclear magnetic resonance Calmodulin law Side chain Bacteriophage T4 Humans Disulfides Spin label Electron paramagnetic resonance Spectroscopy Chemistry Relaxation (NMR) Electron Spin Resonance Spectroscopy Site-directed spin labeling Muramidase Spin Labels |
Zdroj: | Journal of Biomolecular NMR. 51:105-114 |
ISSN: | 1573-5001 0925-2738 |
DOI: | 10.1007/s10858-011-9545-x |
Popis: | The measurement of (1)H transverse paramagnetic relaxation enhancement (PRE) has been used in biomolecular systems to determine long-range distance restraints and to visualize sparsely-populated transient states. The intrinsic flexibility of most nitroxide and metal-chelating paramagnetic spin-labels, however, complicates the quantitative interpretation of PREs due to delocalization of the paramagnetic center. Here, we present a novel, disulfide-linked nitroxide spin label, R1p, as an alternative to these flexible labels for PRE studies. When introduced at solvent-exposed α-helical positions in two model proteins, calmodulin (CaM) and T4 lysozyme (T4L), EPR measurements show that the R1p side chain exhibits dramatically reduced internal motion compared to the commonly used R1 spin label (generated by reacting cysteine with the spin labeling compound often referred to as MTSL). Further, only a single nitroxide position is necessary to account for the PREs arising from CaM S17R1p, while an ensemble comprising multiple conformations is necessary for those observed for CaM S17R1. Together, these observations suggest that the nitroxide adopts a single, fixed position when R1p is placed at solvent-exposed α-helical positions, greatly simplifying the interpretation of PRE data by removing the need to account for the intrinsic flexibility of the spin label. |
Databáze: | OpenAIRE |
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