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High Resolution EPR Applications to Metalloenzymes and Metals in Medicine

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Beschreibung

Produktdetails

Einband

Taschenbuch

Erscheinungsdatum

30.10.2014

Herausgeber

Graeme Hanson + weitere

Verlag

Springer Us

Seitenzahl

666

Maße (L/B/H)

23,5/15,5/3,7 cm

Gewicht

1044 g

Auflage

2009

Sprache

Englisch

ISBN

978-1-4899-8345-9

Beschreibung

Portrait

Prof. Graeme Hanson, located in the Centre for Magnetic Resonance at the University of Queensland, has applied a unique synergistic approach involving both theoretical and experimental aspects of multifrequency continuous wave and pulsed EPR spectroscopy to structurally (geometric and electronic) characterise the metal binding sites in metalloenzymes and transition metal ion complexes. The development and commercialisation of the XSophe-Sophe-XeprView (CW EPR) and Molecular Sophe(CW EPR, Pulsed EPR and ENDOR) computer simulation software suites has been crucial in the characterisation of these biological inorganic systems. Dr. Lawrence J. Berliner is currently at the Department of Chemistry and Biochemistry, University of Denver, where he was Professor and Chair for the past 8 years. He retired from The Ohio State University, where he spent a 32-year career in the area of biological magnetic resonance (EPR and NMR). He has been recognized by the International EPR Society with the Silver Medal for Biology/Medicine in 2000. He also received the Lifetime Achievement Award in Biological EPR Spectroscopy at EPR-2005. He is the Series Editor for Biological Magnetic Resonance, which he launched in 1979.

Produktdetails

Einband

Taschenbuch

Erscheinungsdatum

30.10.2014

Herausgeber

Verlag

Springer Us

Seitenzahl

666

Maße (L/B/H)

23,5/15,5/3,7 cm

Gewicht

1044 g

Auflage

2009

Sprache

Englisch

ISBN

978-1-4899-8345-9

Herstelleradresse

Springer-Verlag KG
Sachsenplatz 4-6
1201 Wien
AT

Email: GPSR Kontakt

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  • Produktbild: High Resolution EPR
  • Produktbild: High Resolution EPR
  • Chapter 1
    Introduction....................................................................................................... 1
    John R. Pilbrow
    HIGH-RESOLUTION EPR METHODS
    Chapter 2
    Advanced Pulse EPR Methods for the Characterization of Metalloproteins
    Jeffrey Harmer, George Mitrikas, and Arthur Schweiger
    1. Introduction................................................................................................. 13
    2. Spin Hamiltonian ........................................................................................ 15
    3. ESEEM Basics ............................................................................................ 20
    4. Electron Nuclear Double Resonance (ENDOR).......................................... 40
    5. Field-Swept EPR Experiments .................................................................... 52
    6. Strategies and Outlook ................................................................................ 54
    Chapter 3
    Probing Structural and Electronic Parameters in Randomly Oriented Metalloproteins by Orientation-Selective ENDOR Spectroscopy
    Reinhard Kappl, Gerhard Bracic, and Jürgen Hüttermann
    1. Introduction................................................................................................. 64
    2. Theory ......................................................................................................... 65
    3. Orientation Selection in EPR and ENDOR................................................. 74
    4. Examples of Applications: Iron–Sulfur Proteins......................................... 82
    5. Summary ..................................................................................................... 100
    Chapter 4
    Molecular Sophe: An Integrated Approach to the Structural Characterization of Metalloproteins: The Next Generation of Computer SimulationSoftware
    Graeme R. Hanson, Christopher J. Noble, and Simon Benson
    1. Introduction................................................................................................. 105
    2. Molecular Sophe Computational Software Suite ........................................ 114
    3. Sophe: Computational Code........................................................................ 150
    4. Molecular Sophe — Examples.................................................................... 159
    5. Advances in Spectral Optimization ............................................................. 167
    6. Conclusions................................................................................................. 171
    Chapter 5
    Spin-Hamiltonian Parameters from First Principle Calculations: Theory and Application
    Frank Neese
    1. Introduction................................................................................................. 175
    2. Electronic Structure Theory of Spin-Hamiltonian Parameters .................... 177
    3. Case Studies ................................................................................................ 201
    4. Concluding Remarks ................................................................................... 222
    IRON PROTEINS
    Chapter 6
    EPR of Mononuclear Non-Heme Iron Proteins
    Betty J. Gaffney
    1. EPR of Mononuclear, High-Spin Ferric Non-Heme Proteins ...................... 233
    2. EPR of Mononuclear, Low-Spin Ferric Non-Heme Proteins ....................... 251
    3. Radical (S = 1/2) Probes of Ferrous (S = 2) Iron ........................................ 251
    Chapter 7
    Binuclear Non-Heme Iron Enzymes
    Nataša Mitic, Gerhard Schenk, and Graeme R. Hanson
    1. Introduction.................................................................................................. 269
    2. Bacterial