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Publications by Hanke GT
Non-Covalent Forces Tune the Electron Transfer Complex Between Ferredoxin and Sulfite Reductase to Optimize Enzymatic Activity
Biochemical Journal
Biochemistry
Cell Biology
Molecular Biology
Related publications
Crystal Structure of the Photosynthetic Electron Transfer Complex Between Ferredoxin and Ferredoxin-Nadp+ Reductase From Maize
Seibutsu Butsuri
Ferredoxin-Sulfite Reductase From Spinach.
Agricultural and Biological Chemistry
Ferredoxin-Sulfite Reductase From a Cyanobacterium, Spirulina Platensis.
Agricultural and Biological Chemistry
Isolation and Partial Characterization of Homogeneous Ferredoxin-Sulfite Reductase From a Red Alga,Porphyra Yezoensis
Agricultural and Biological Chemistry
A Structural Basis ofEquisetum arvenseFerredoxin Isoform II Producing an Alternative Electron Transfer With Ferredoxin-NADP+Reductase
Journal of Biological Chemistry
Biochemistry
Cell Biology
Molecular Biology
A Molecular Dynamics Model to Measure Forces Between Cellulose Fibril Surfaces: On the Effect of Non-Covalent Polyelectrolyte Adsorption
Cellulose
Polymers
Plastics
Oxidation-Reduction Potentials of Ferredoxin-Nadp+ Reductase and Flavodoxin From Anabaena PCC 7119 and Their Electrostatic and Covalent Complexes
FEBS Journal
Biochemistry
Cell Biology
Molecular Biology
Urea Unfolding of Ferredoxin-Nadp^+ Reductase
Seibutsu Butsuri
A 60-Heme Reductase Complex From an Anammox Bacterium Shows an Extended Electron Transfer Pathway
Acta Crystallographica Section D: Structural Biology
Structural Biology