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1. In Vitro Demonstration of Dual Light-Driven Na+/H+ Pumping by a Microbial Rhodopsin

2. Cation-Specific Conformations in a Dual-Function Ion-Pumping Microbial Rhodopsin

3. Spectroscopic Evidence of the Role of an Axial Ligand Histidinate in the Mechanism of Adrenal Cytochrome b561

4. Functional and Structural Roles of Residues in the Third Extramembrane Segment of Adrenal Cytochrome b561

5. 1H NMR, Mechanism, and Mononuclear Oxidative Activity of the Antibiotic Metallopeptide Bacitracin: The Role of <scp>d</scp>-Glu-4, Interaction with Pyrophosphate Moiety, DNA Binding and Cleavage, and Bioactivity

6. How Well Should the Active Site and the Specific Recognition Be Defined for Proficient Catalysis? – Effective and Cooperative Polyphenol/Catechol Oxidation and Oxidative DNA Cleavage by a Copper(II)‐Binding and H‐Bonding Copolymer

7. Metallo-ROS in Alzheimer's Disease: Oxidation of Neurotransmitters by CuII-β-Amyloid and Neuropathology of the Disease

8. Overexpression and Mechanistic Characterization of Blastula Protease 10, a Metalloprotease Involved in Sea Urchin Embryogenesis and Development

9. Alzheimer's Disease Related Copper(II)- β-Amyloid Peptide Exhibits Phenol Monooxygenase and Catechol Oxidase Activities

10. Catechol Oxidase-like Oxidation Chemistry of the 1–20 and 1–16 Fragments of Alzheimer's Disease-related β-Amyloid Peptide

11. Metal binding of flavonoids and their distinct inhibition mechanisms toward the oxidation activity of Cu2+-β-amyloid: not just serving as suicide antioxidants!

12. Methionine does not reduce Cu(II)-beta-amyloid!--rectification of the roles of methionine-35 and reducing agents in metal-centered oxidation chemistry of Cu(II)-beta-amyloid

13. Catechol oxidase activity of di-Cu2+-substituted aminopeptidase from Streptomyces griseus

14. Catechol oxidase-like oxidation chemistry of the 1-20 and 1-16 fragments of Alzheimer's disease-related beta-amyloid peptide: their structure-activity correlation and the fate of hydrogen peroxide

15. Alzheimer's Disease Related Copper(II)- β-Amyloid Peptide Exhibits Phenol Monooxygenase and Catechol Oxidase ActivitiesG.F.Z.S. dedicates this work to his parents for their unyielding support. The authors dedicate this work to the Kelley and Sotolongo families for their unfortunate experience with Alzheimer's disease. Our research on the structure and activity of metallopeptides was partially supported by the Research and Creative Award of the University of South Florida and the Petroleum Research Fund administrated by the American Chemical Society (PRF AC #40851-AC3). We thank John Kelley for the modification of the picture for the Table of Contents.

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