756 results on '"Peters, John W."'
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152. Unraveling the interactions of the physiological reductant flavodoxin with the different conformations of the Fe protein in the nitrogenase cycle
153. Two functionally distinct NADP+-dependent ferredoxin oxidoreductases maintain the primary redox balance of Pyrococcus furiosus
154. The Electron Bifurcating FixABCX Protein Complex from Azotobacter vinelandii: Generation of Low-Potential Reducing Equivalents for Nitrogenase Catalysis
155. Structural Basis for the Mechanism of ATP-Dependent Acetone Carboxylation
156. The Physiological Functions and Structural Determinants of Catalytic Bias in the [FeFe]-Hydrogenases CpI and CpII of Clostridium pasteurianum Strain W5
157. Reduction Potentials of [FeFe]-Hydrogenase Accessory Iron–Sulfur Clusters Provide Insights into the Energetics of Proton Reduction Catalysis
158. Microbial substrate preference dictated by energy demand rather than supply
159. Diazotrophic Growth Allows Azotobacter vinelandii To Overcome the Deleterious Effects of a glnE Deletion
160. Mechanistic insights into energy conservation by flavin-based electron bifurcation
161. Structure-Based Mechanism for Oxidative Decarboxylation Reactions Mediated by Amino Acids and Heme Propionates in Coproheme Decarboxylase (HemQ)
162. Defining Intermediates of Nitrogenase MoFe Protein during N2Reduction under Photochemical Electron Delivery from CdS Quantum Dots
163. Tuning Catalytic Bias of Hydrogen Gas Producing Hydrogenases
164. Protein Scaffold Activates Catalytic CO2 Hydrogenation by a Rhodium Bis(diphosphine) Complex.
165. Comment on “Structural evidence for a dynamic metallocofactor during N2 reduction by Mo-nitrogenase”.
166. Unification of [FeFe]-hydrogenases into three structural and functional groups
167. Substitution of a conserved catalytic dyad into 2‐KPCC causes loss of carboxylation activity
168. Symbiotic Nitrogen Fixation and the Challenges to Its Extension to Nonlegumes
169. The role of geochemistry and energetics in the evolution of modern respiratory complexes from a proton-reducing ancestor
170. Evidence That the Pi Release Event Is the Rate-Limiting Step in the Nitrogenase Catalytic Cycle
171. A Redox Active [2Fe-2S] Cluster on the Hydrogenase Maturase HydF
172. Electron bifurcation
173. Iron–sulfur cluster coordination in the [FeFe]-hydrogenase H cluster biosynthetic factor HydF
174. Biochemical and Structural Properties of a Thermostable Mercuric Ion Reductase from Metallosphaera sedula
175. Carbon Source Preference in Chemosynthetic Hot Spring Communities
176. Biochemical and Structural Characterization of Enolase from Chloroflexus aurantiacus: Evidence for a Thermophilic Origin
177. [FeFe]- and [NiFe]-hydrogenase diversity, mechanism, and maturation
178. Fe Protein-Independent Substrate Reduction by Nitrogenase MoFe Protein Variants
179. Use of plant colonizing bacteria as chassis for transfer of N2-fixation to cereals
180. Evolution of Molybdenum Nitrogenase during the Transition from Anaerobic to Aerobic Metabolism
181. Radical S-Adenosyl-l-methionine Chemistry in the Synthesis of Hydrogenase and Nitrogenase Metal Cofactors
182. [FeFe]-Hydrogenase Oxygen Inactivation Is Initiated at the H Cluster 2Fe Subcluster
183. Investigations on the Role of Proton-Coupled Electron Transfer in Hydrogen Activation by [FeFe]-Hydrogenase
184. Growth of Chlamydomonas reinhardtii in acetate-free medium when co-cultured with alginate-encapsulated, acetate-producing strains of Synechococcus sp. PCC 7002
185. Structural basis for carbon dioxide binding by 2-ketopropyl coenzyme M oxidoreductase/carboxylase
186. Electron Bifurcation: Thermodynamics and Kinetics of Two-Electron Brokering in Biological Redox Chemistry.
187. Substrate specificity and evolutionary implications of a NifDK enzyme carrying NifB-co at its active site
188. Reversible H Atom Abstraction Catalyzed by the Radical S-Adenosylmethionine Enzyme HydG
189. Hydrogen Metabolism and the Evolution of Biological Respiration
190. [FeFe]-Hydrogenase Maturation
191. Evolutionary and Biotechnological Implications of Robust Hydrogenase Activity in Halophilic Strains of Tetraselmis
192. Competition for Ammonia Influences the Structure of Chemotrophic Communities in Geothermal Springs
193. Expanding the paradigm of thiol redox in the thermophilic root of life
194. Photochemistry at the active site of the carbon monoxide inhibited form of the iron-only hydrogenase
195. Biochemical and Kinetic Characterization of Radical S-Adenosyl-l-methionine Enzyme HydG
196. EPR and FTIR Analysis of the Mechanism of H2 Activation by [FeFe]-Hydrogenase HydA1 from Chlamydomonas reinhardtii
197. Biogenesis of the H‐cluster of the [FeFe]‐hydrogenase
198. Molecular evidence for an active endogenous microbiome beneath glacial ice
199. The modular respiratory complexes involved in hydrogen and sulfur metabolism by heterotrophic hyperthermophilic archaea and their evolutionary implications
200. Characterization of [4Fe-4S] Cluster Vibrations and Structure in Nitrogenase Fe Protein at Three Oxidation Levels via Combined NRVS, EXAFS, and DFT Analyses
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