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Titlebook: Spin Labeling; Theory and Applicati Lawrence J. Berliner,Jacques Reuben Book 1989 Plenum Press, New York 1989 ATP.ATPase.Amino acid.ENDOR.L

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Advantages of 15N and Deuterium Spin Probes for Biomedical Electron Paramagnetic Resonance Investigor structure-function studies of large proteins and membranes. The purpose of this review is to examine the extraordinary utility of the isotopically substituted spin labels by evaluation of selected EPR investigations which may have wide applicability for biomedical experimentation. Therefore, we s
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Approaches to the Chemical Synthesis of 15N and Deuterium Substituted Spin Labels,substituted spin labels have been selected to illustrate the potential for dynamic motional analyses. The scope of the presentation is limited in part by the number of papers available in this relatively new area of isotopic substitution and by the authors’ intent to focus on subjects of interest to
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Book 1989nto nitroxide spin labels, several unique advantages are derived in line-shape analysis. Albert Beth and Bruce Robinson have contributed a detailed chapter on the analysis of these labels in the slow-motion regime while Jane Park and Wolfgang Trommer present the advantages for specific biochemical e
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Inhomogeneously Broadened Spin-Label Spectra, since shortly after the beginning of the spin-label era (Plachy and Kivelson, 1967; Poggi and Johnson, 1970) continually until the present (for example, Jolicoeur and Friedman, 1971; Kovarskii ., 1972; Bullock ., 1975; Ahn, 1976; Freed, 1976; Lim ., 1976; Jones and Schwartz, 1981; Ottaviani ., 1983
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Saturation Transfer Spectroscopy of Spin Labels,s, a region where conventional ESR is not sensitive. The ST-ESR technique has been used especially in spin-label studies of biological systems: supramolecular aggregates and gel-like lipid and membrane systems. A large number of papers has appeared since the first introduction of the technique by Hy
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Nitrogen-15 and Deuterium Substituted Spin Labels for Studies of Very Slow Rotational Motion,quantitation of molecular motion in biological systems. Early studies were largely devoted to characterizations of the nanosecond rotational motions of small soluble proteins and lipid components in membrane bilayers using linear.electron paramagnetic resonance (EPR) spectroscopy. However, developme
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