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Bioinorganic Chemistry : An Inorganic Perspective of Life
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Table of Contents
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Book Overview
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Chapter 1
Methane Monooxygenase
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Chapter 2
The Coordination Chemistry of Iron in Biological Transport and Storage; Iron Removal in Vivo
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Chapter 3
Siderophore-Mediated Iron Transport in Microbes
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Chapter 4
On the Mechanism of Epoxidation and Hydroxylation Catalyzed by Iron Porphyrins. Evidence for Non-Intersecting Reaction Pathways
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Chapter 5
Self-Assembly, Catalysis and Electron Transfer with Metalloporphyrins in Phospholipid Membranes
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Chapter 6
Mechanistic Studies on the Binuclear Fe Enzymes Ribonucleotide Reductase and Purple Acid Phosphatase
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Chapter 7
Structure and Reactivity of the Blue Copper Proteins
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Chapter 8
Copper-Zinc Superoxide Dismutase: Mechanistic and Biological Studies
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Chapter 9
NMR of Paramagnetic Molecules: A Contribution to the Understanding of Enzymatic Mechanisms
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Chapter 10
Magnetic and EPR Studies of Superoxide Dismutases (SOD): Electronic Structure of the Active Sites for the (Copper-Zinc)SOD, its Cobalt Substituted Derivative and the Iron(III)SOD from E. Coli
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Chapter 11
Mechanism of Action of Thiamin Enzymes Role of Metal Ions
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Chapter 12
Platinum Anticancer Drugs
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Chapter 13
NMR Spectroscopic Structure Determination of Metal Ion — Oligonucleotide Complexes — The Results of Sequence-Selective Binding Studies
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Chapter 14
Metal Ion-Coordinating Properties in Solution of Purine-Nucleoside 5’-Monophosphates and Some Analogues
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Chapter 15
Metal-Nucleobase Chemistry: Coordination, Reactivity, and Base Pairing
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Chapter 16
DNA Cleavage by Cationic Metalloporphyrins
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Chapter 17
The Role of Metal Ions in Biological Systems and Medicine
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Chapter 18
The Interaction of Heavy Metal Ions with DNA
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Chapter 19
Thermodynamics and Kinetics of Competing Redox Processes During DNA Cleavage: Reactivity-Based Selectivity
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Chapter 20
Mo/S Chemistry and Its Importance in Enzymatic Catalysis
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Chapter 21
Use of De Novo Designed Peptides for the Study of Metalloproteins and Enzymes
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Chapter 22
Modeling the Chemistry and Properties of Multinuclear Manganese Enzymes
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Chapter 23
Manganese-Proteins and -Enzymes and Relevant Trinuclear Synthetic Complexes
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Chapter 24
Catalytic Oxidation of Pollutants by Ligninase Models Based on Metalloporphyrins and Metallophthalocyanines
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Chapter 25
Nickel Coordination Chemistry with Oxothiolate Ligands and Its Relevance to Hydrogenase Enzymes
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Chapter 26
Artificial Batteries with Lanthanide Porphyrins?
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Chapter 27
Novel Transition Metal Heteropolymetalates and Derivatives: Structural Chemistry, Biological and Catalytic Relevance
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Chapter 28
Purple Acid Phosphatases and Catechol Oxidase and their Model Compounds. Crystal Structure Studies of Purple Acid Phosphatase from Red Kidney Beans
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Chapter 29
Molybdenum — Copper Antagonism
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Book overview
1. Methane Monooxygenase
2. The Coordination Chemistry of Iron in Biological Transport and Storage; Iron Removal in Vivo
3. Siderophore-Mediated Iron Transport in Microbes
4. On the Mechanism of Epoxidation and Hydroxylation Catalyzed by Iron Porphyrins. Evidence for Non-Intersecting Reaction Pathways
5. Self-Assembly, Catalysis and Electron Transfer with Metalloporphyrins in Phospholipid Membranes
6. Mechanistic Studies on the Binuclear Fe Enzymes Ribonucleotide Reductase and Purple Acid Phosphatase
7. Structure and Reactivity of the Blue Copper Proteins
8. Copper-Zinc Superoxide Dismutase: Mechanistic and Biological Studies
9. NMR of Paramagnetic Molecules: A Contribution to the Understanding of Enzymatic Mechanisms
10. Magnetic and EPR Studies of Superoxide Dismutases (SOD): Electronic Structure of the Active Sites for the (Copper-Zinc)SOD, its Cobalt Substituted Derivative and the Iron(III)SOD from E. Coli
11. Mechanism of Action of Thiamin Enzymes Role of Metal Ions
12. Platinum Anticancer Drugs
13. NMR Spectroscopic Structure Determination of Metal Ion — Oligonucleotide Complexes — The Results of Sequence-Selective Binding Studies
14. Metal Ion-Coordinating Properties in Solution of Purine-Nucleoside 5’-Monophosphates and Some Analogues
15. Metal-Nucleobase Chemistry: Coordination, Reactivity, and Base Pairing
16. DNA Cleavage by Cationic Metalloporphyrins
17. The Role of Metal Ions in Biological Systems and Medicine
18. The Interaction of Heavy Metal Ions with DNA
19. Thermodynamics and Kinetics of Competing Redox Processes During DNA Cleavage: Reactivity-Based Selectivity
20. Mo/S Chemistry and Its Importance in Enzymatic Catalysis
21. Use of De Novo Designed Peptides for the Study of Metalloproteins and Enzymes
22. Modeling the Chemistry and Properties of Multinuclear Manganese Enzymes
23. Manganese-Proteins and -Enzymes and Relevant Trinuclear Synthetic Complexes
24. Catalytic Oxidation of Pollutants by Ligninase Models Based on Metalloporphyrins and Metallophthalocyanines
25. Nickel Coordination Chemistry with Oxothiolate Ligands and Its Relevance to Hydrogenase Enzymes
26. Artificial Batteries with Lanthanide Porphyrins?
27. Novel Transition Metal Heteropolymetalates and Derivatives: Structural Chemistry, Biological and Catalytic Relevance
28. Purple Acid Phosphatases and Catechol Oxidase and their Model Compounds. Crystal Structure Studies of Purple Acid Phosphatase from Red Kidney Beans
29. Molybdenum — Copper Antagonism
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