| Editorial Preface Colour Plates Historical Perspectives | |
| A Personal Historical Introduction to Photosystem I: Ferredoxin+FNR, the Key to NADP Reduction | |
| The Discovery of Bound Iron-Sulfur Clusters in Photosystem I by EPR Spectroscopy | |
| The Discovery of P430 and Works on PS I Electron Acceptors FeS-X and A0 at the Charles F. Kettering Research Laboratory | |
| The Discovery of the A1 and A2 (FX) Acceptors by Time-Resolved Optical Spectroscopy | |
| Structural Studies on a Supercomplex of Photosystem I and Light-Harvesting Complex II | |
| Structural Analysis of Cyanobacterial Photosystem I | |
| Structure, Function, and Regulation of Plant Photosystem I | |
| Molecular Interactions of the Stromal Subunit PsaC with the PsaA/PsaB Heterodimer | |
| Accessory Chlorophyll Proteins in Cyanobacterial Photosystem I | |
| LHCI: the Antenna Complex of Photosystem I in Plants | |
| The Low Molecular Mass Subunits of Higher Plant Photosystem I | |
| Excitation Dynamics and Electron Transfer Processes | |
| Ultrafast Optical Spectroscopy of Photosystem I | |
| The Long Wavelength Chlorophylls of Photosystem I | |
| Modification of the Cofactors and their Environments | |
| Mutagenesis of the Ligands to the Cofactors in Photosystem I | |
| Genetic Manipulation of Quinone Biosynthesis in Cyanobacteria | |
| Optical Measurements Secondary Electron Transfer in Photosystem I | |
| EPR Studies of the Primary Electron Donor P700 in Photosystem I | |
| FTIR Studies of the Primary Electron Donor, P700 | |
| Primary Charge Separation between P700* and the Primary Electron Acceptor Complex A-A0: A Comparison with Bacterial Reaction Centers | |
| FTIR Studies of the Intermediate Electron Acceptor A1; | |
| Electrogenic Reactions Associated with Electron Transfer in Photosystem I | |
| High-Field EPR Studies of the Electron Transfer Intermediates in Photosystem I | |
| Transient EPR Spectroscopy Applied to Electron Transfer in Photosystem I | |
| Electron Transfer Involving Phylloquinone in Photosystem I | |
| The Directionality of Electron Transfer in Photosystem I | |
| Electron Transfer from the Bound Iron-Sulfur Clusters to Ferredoxin/Flavodoxin | |
| Electron Transfer From Ferredoxin and Flavodoxin to Ferredoxin:NADP+ Reductase | |
| The Interaction of Ferredoxin with Ferredoxin-Dependent Enzymes | |
| Electron Transfer between Photosystem I and Plastocyanin or Cytochrome c6 | |
| Genetic Dissection of Photosystem I Assembly and Turnover | |
| The Assembly of the Bound Iron-Sulfur Clusters in Photosystem I | |
| The Assembly of Photosystem I Reducing Site | |
| The Thermodynamics of Photosystem I | |
| Application of Marcus Theory to Photosystem I Electron Transfer | |
| Modeling of Optical Spectra and Light Harvesting in Photosystem I | |
| Functional Modeling of Electron Transfer in Photosynthetic Reaction Centers | |
| Cyclic Electron Transfer Around Photosystem I | |
| Photoinhibition and Protection in Photosystem I | |
| How did the Photosystem I Reaction Center Evolve? | |
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