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1. The mitochondrial Cu + transporter PiC2 (SLC25A3) is a target of MTF1 and contributes to the development of skeletal muscle in vitro .

2. Cu A -based chimeric T1 copper sites allow for independent modulation of reorganization energy and reduction potential.

3. Purple Mixed-Valent Copper A.

4. Arabidopsis thaliana Hcc1 is a Sco-like metallochaperone for Cu A assembly in Cytochrome c Oxidase.

5. Unexpected electron spin density on the axial methionine ligand in Cu A suggests its involvement in electron pathways.

6. COA6 Is Structurally Tuned to Function as a Thiol-Disulfide Oxidoreductase in Copper Delivery to Mitochondrial Cytochrome c Oxidase.

7. pH-Induced Binding of the Axial Ligand in an Engineered Cu A Site Favors the π u State.

8. Biochemistry of Copper Site Assembly in Heme-Copper Oxidases: A Theme with Variations.

9. Formation and Electronic Structure of an Atypical Cu A Site.

10. Fine Tuning of Functional Features of the Cu A Site by Loop-Directed Mutagenesis.

11. Dramatic Electronic Perturbations of Cu A Centers via Subtle Geometric Changes.

12. Tuning of Enthalpic/Entropic Parameters of a Protein Redox Center through Manipulation of the Electronic Partition Function.

13. Loop recognition and copper-mediated disulfide reduction underpin metal site assembly of CuA in human cytochrome oxidase.

14. Reversible Switching of Redox-Active Molecular Orbitals and Electron Transfer Pathways in Cu(A) Sites of Cytochrome c Oxidase.

15. Control of the electronic ground state on an electron-transfer copper site by second-sphere perturbations.

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