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Titlebook: Distance Measurements in Biological Systems by EPR; Lawrence J. Berliner,Gareth R. Eaton,Sandra S. Eat Book 2000 Springer Science+Business

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https://doi.org/10.1007/978-3-030-02038-5ucture and function of biological macromolecules. In this chapter, we describe a new approach that has been developed for effective and reasonably accurate data analysis, followed by discussions of several successful applications to interesting biological problems on membrane-associated proteins. Th
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NoC-Aware Computational Sprintinge backbone alpha carbon. Because the conformation of TOAC is highly constrained, distances determined between pairs of TOACs are not compromised by uncertainties in nitroxide side chain orientations. ESR detected interactions between TOACs have revealed accurate distances out to beyond 10 Å and, cor
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NoC-Aware Computational Sprintingter on the spin-lattice relaxation and on the spin echo dephasing of the slowly-relaxing center. The principles underlying these measurements are discussed and examples are given for high-spin and low-spin Fe(III).
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The Darwinian Tradition in Contextngs from all other contributions to the Hamiltonian and from relaxational broadening. The double electron-electron resonance (DEER) experiment as one of these methods is described and guidelines for its use are given. It is concluded that the experiment requires only minor modifications of commercia
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The Darwinian Tradition in Context, bacteria and algae. Such measurements have also been pivotal in establishing the feasibility of EPR distance measurements in biological systems. In this chapter, we present an overview of distance measurements in the purple non-sulfur bacterial, Photosystem II and Photosystem I reaction centers. T
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