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Nuclear Magnetic Resonance of Paramagnetic Macromolecules (Hardcover, 1995 ed.): G. N. La Mar Nuclear Magnetic Resonance of Paramagnetic Macromolecules (Hardcover, 1995 ed.)
G. N. La Mar
R5,669 Discovery Miles 56 690 Ships in 10 - 15 working days

Since A. Kowalsky's first report of the spectrum of cytochrome c in 1965, interest in the detection, assignment and interpretation of paramagnetic molecules has surged, especially in the last decade. Two classes of systems have played a key role in the development of the field: heme proteins and iron-sulfur proteins. These two systems are unique in many respects, one of which is that they contain well-defined chromophores, each of which can be studied in detail outside the protein matrix. They are the most successfully studied macromolecules, and the first eight and last six of the seventeen contributions to this book deal with heme and/or iron-sulfur proteins. The middle three chapters survey the progress on, and significant promise of, more difficult systems which do not possess a chromophore, but which have nevertheless yielded remarkable insights into their structure.

Nuclear Magnetic Resonance of Paramagnetic Macromolecules (Paperback, Softcover reprint of hardcover 1st ed. 1995): G. N. La Mar Nuclear Magnetic Resonance of Paramagnetic Macromolecules (Paperback, Softcover reprint of hardcover 1st ed. 1995)
G. N. La Mar
R5,463 Discovery Miles 54 630 Ships in 10 - 15 working days

Since A. Kowalsky's first report of the spectrum of cytochrome c in 1965, interest in the detection, assignment and interpretation of paramagnetic molecules has surged, especially in the last decade. Two classes of systems have played a key role in the development of the field: heme proteins and iron-sulfur proteins. These two systems are unique in many respects, one of which is that they contain well-defined chromophores, each of which can be studied in detail outside the protein matrix. They are the most successfully studied macromolecules, and the first eight and last six of the seventeen contributions to this book deal with heme and/or iron-sulfur proteins. The middle three chapters survey the progress on, and significant promise of, more difficult systems which do not possess a chromophore, but which have nevertheless yielded remarkable insights into their structure.

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