Amanote Research
Register
Sign In
Higher Order Structure Contributes to Specific Differences in Redox Potential and Electron Transfer Efficiency of Root and Leaf Ferredoxins
doi 10.1021/bi061779d.s001
Full Text
Open PDF
Abstract
Available in
full text
Date
Unknown
Authors
Unknown
Publisher
American Chemical Society (ACS)
Related search
The Stoicheiometry of Electron Transfer by Bacterial and Plant Ferredoxins
Biochemical Journal
What Contributes to Individual Differences in Brain Structure?
Frontiers in Human Neuroscience
Mental Health
Neuropsychology
Physiological Psychology
Neurology
Behavioral Neuroscience
Psychiatry
Biological Psychiatry
Novel Morphometric Analysis of Higher Order Structure of Human Radial Peri-Papillary Capillaries: Relevance to Retinal Perfusion Efficiency and Age
Scientific Reports
Multidisciplinary
Probing the Electronic Structure of Redox Species and Direct Determination of Intrinsic Reorganization Energies of Electron Transfer Reactions
Journal of Chemical Physics
Medicine
Theoretical Chemistry
Astronomy
Physics
Physical
Higher-Order Chromatin Structure: Bridging Physics and Biology
Current Opinion in Genetics and Development
Genetics
Developmental Biology
Redox‐active Guanidines in Proton‐Coupled Electron Transfer Reactions: Real Alternatives to Benzoquinones?
Chemistry - A European Journal
Organic Chemistry
Catalysis
Chemistry
Erratum To: Jet Algorithms in Electron–positron Annihilation: Perturbative Higher Order Predictions
European Physical Journal C
Engineering
Astronomy
Physics
Water-Mediated Electron Transfer Between Protein Redox Centers
Comparison of Training and Detraining on Redox State of Rats: Gender Specific Differences
General Physiology and Biophysics
Medicine
Physiology
Biophysics