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Electron Paramagnetic Resonance Investigations of Biological Systems by Using Spin Labels, Spin Probes, and Intrinsic Metal Ions Part A Methods in Enzymology Series

Langue : Anglais
Couverture de l’ouvrage Electron Paramagnetic Resonance Investigations of Biological Systems by Using Spin Labels, Spin Probes, and Intrinsic Metal Ions Part A

Electron Paramagnetic Resonance Investigations of Biological Systems by Using Spin Labels, Spin Probes, and Intrinsic Metal Ions Part A & B, are the latest volumes in the Methods in Enzymology series, continuing the legacy of this premier serial with quality chapters authored by leaders in the field. This volume covers research methods centered on the use of Electron Paramagnetic Resonance (EPR) techniques to study biological structure and function.

Part A & B includes contributions on: I. EPR Instrumentation & Methodology II. Spin Labels: Chemistry III. Spin Labeling Applications to Biological System   Including: Computational Methods, Simulation & Modeling, Membrane Proteins, Other Proteins, Nucleic Acids and Protein-Nucleic Acid Interactions, Lipids & Membranes IV. Metal Cofactors in Biology V. EPR-NMR Methods and Application VI. EPR Detection of Free Radicals and EPR Imaging

  • Timely contribution that describes a rapidly changing field
  • Leading researchers in the field
  • Broad coverage: Instrumentation, basic theory, data analysis, and applications

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Ouvrage de 702 p.

15x22.8 cm

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Thèmes d’Electron Paramagnetic Resonance Investigations of... :

Mots-clés :

{FeNO}7; 2prime-Amino RNA; 4-Isocyanato-TEMPO; Accessibility EPR experiments; ALLNOX; Aminoxyl radical; Binding isotherms; Brownian diffusion; Computation; Conformation; Conformational exchange; Conformational sampling; DEER; DeerAnalysis; DEERconstruct; Deuteration; Deuterium; Diamond; Distance; Distance measurements; Double electron-electron resonance; Dynamic trajectory; EasySpin; ELDOR-detected NMR (EDNMR); Electron nuclear double resonance; Electron paramagnetic resonance; Electron paramagnetic resonance spectroscopy; Electron spin echo dephasing; ENDOR; Envelope division; EPR; EPR spectroscopy; ESEEM; ESR; Flexibility; Gaussian reconstruction; Gd3+ tags; High frequency; High magnetic field; High-field EPR; Hyperfine coupling; HYSCORE; Intramolecular motions; Inversion recovery; Isoindoline; Isothiocyanate; Least-squares; Membrane mimetics; Membrane peptide; Membrane protein; Metalloenzymes; Metalloproteins; Molecular dynamics; Molecular tumbling; Multifrequency; Nitric oxide synthase; Nitroxide; Nitroxide label; NMR; Nonheme iron; Orientation selection; Orienting potential; P450; Parallel-mode; PELDOR; Peptide aggregation; Peptide binding; Protein structure; Pulsed electron double resonance; Pulsed EPR; Quantitative; Saturation recovery; SDSL; Secondary structure; Sensitivity; Simulation; Site-directed spin labeling; Slow motion; Solvent motions; Spin coherence; Spin label; Spin labeling; Spin labels; SpinCount; Stochastic Liouville equation; Transition metals; Transmembrane signaling; Transmembrane transport; Transport proteins; Tyrosine hydroxylase