Ligand binding to the FeMo-cofactor: Structures of CO-bound and reactivated nitrogenase
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September 2014
Critical computational analysis illuminates the reductive-elimination mechanism that activates nitrogenase for N 2 reduction
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October 2018
Removal of hexavalent chromium from solutions by mackinawite, tetragonal FeS
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September 2004
Mössbauer, Electron Paramagnetic Resonance, and Theoretical Studies of a Carbene-Based All-Ferrous Fe 4 S 4 Cluster: Electronic Origin and Structural Identification of the Unique Spectroscopic Site
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February 2009
Current status of structure function relationships of vanadium nitrogenase
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February 2003
Organic sulfur compounds resulting from the interaction of iron sulfide, hydrogen sulfide and carbon dioxide in an anaerobic aqueous environment
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April 1996
Moessbauer and integer-spin EPR of the oxidized P-clusters of nitrogenase: POX is a non-Kramers system with a nearly degenerate ground doublet
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October 1992
Effect of magnesium adenosine 5'-triphosphate on the accessibility of the iron of clostridial azoferredoxin, a component of nitrogenase
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May 1974
Reduction of Substrates by Nitrogenases
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March 2020
Structural Analysis of a Nitrogenase Iron Protein from Methanosarcina acetivorans : Implications for CO 2 Capture by a Surface-Exposed [Fe 4 S 4 ] Cluster
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July 2019
Structure and Reactivity of an Asymmetric Synthetic Mimic of Nitrogenase Cofactor
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November 2016
Molybdenum and tungsten-containing formate dehydrogenases: Aiming to inspire a catalyst for carbon dioxide utilization
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January 2017
Construction and characterization of an Azotobacter vinelandii strain with mutations in the genes encoding flavodoxin and ferredoxin I.
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June 1989
Evidence for Coupled Electron and Proton Transfer in the [8Fe-7S] Cluster of Nitrogenase †
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August 1998
Pyrite formation linked with hydrogen evolution under anaerobic conditions
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August 1990
Hydrothermal vents and the origin of life
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September 2008
The in vivo hydrocarbon formation by vanadium nitrogenase follows a secondary metabolic pathway
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December 2016
Mechanism of Molybdenum Nitrogenase
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January 1996
Redox reactions of and nucleotide binding to the iron protein of Azotobacter vinelandii
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December 1986
Insights into the role of nucleotide-dependent conformational change in nitrogenase catalysis: Structural characterization of the nitrogenase Fe protein Leu127 deletion variant with bound MgATP
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May 2006
Oxidative Titration of the Nitrogenase VFe Protein from Azotobacter vinelandii : An Example of Redox-Gated Electron Flow †
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January 1996
Fischer−Tropsch Synthesis Using H 2 /CO/CO 2 Syngas Mixtures over a Cobalt Catalyst
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November 2010
Two ligand-binding sites in CO-reducing V nitrogenase reveal a general mechanistic principle
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May 2021
Stepwise formation of P-cluster in nitrogenase MoFe protein
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October 2009
Characterization of a Mo‐Nitrogenase Variant Containing a Citrate‐Substituted Cofactor
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October 2020
First-Principles Calculations of Fischer-Tropsch Processes Catalyzed by Nitrogenase Enzymes
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December 2012
Structures of the nitrogenase complex prepared under catalytic turnover conditions
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August 2022
Quantitative EPR of an S = 7/2 system in thionine-oxidized MoFe proteins of nitrogenase. A redefinition of the P-cluster concept
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December 1987
Reactions depending on iron sulfide and linking geochemistry with biochemistry.
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September 1992
Before enzymes and templates: theory of surface metabolism
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December 1988
Vanadium Nitrogenase Reduces CO
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August 2010
Spectroscopic Characterization of the Isolated Iron-Molybdenum Cofactor (FeMoco) Precursor from the Protein NifEN
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July 2011
Nitrogenase MoFe-Protein at 1.16 A Resolution: A Central Ligand in the FeMo-Cofactor
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September 2002
Two-Stage Continuous Conversion of Carbon Monoxide to Ethylene by Whole Cells of Azotobacter vinelandii
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May 2020
Comparison of redox and EPR properties of the molybdenum iron proteins of Clostridium pasteurianum and Azotobacter vinelandii nitrogenases
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June 1988
Structural basis of biological nitrogen fixation
Rees, Douglas C.; Akif Tezcan, F.; Haynes, Chad A.
Philosophical Transactions of the Royal Society A: Mathematical, Physical and Engineering Sciences, Vol. 363, Issue 1829
https://doi.org/10.1098/rsta.2004.1539
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April 2005
Formation of an all ferrous Fe4S4 cluster in the iron protein component of Azotobacter vinelandii nitrogenase
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March 1994
ATP-Independent Formation of Hydrocarbons Catalyzed by Isolated Nitrogenase Cofactors
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January 2012
Arsenic mobility in the ambient sulfidic environment: Sorption of arsenic(V) and arsenic(III) onto disordered mackinawite
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July 2005
Influence of pN2 and pD2 on HD formation by various nitrogenases
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September 1983
Mössbauer and Integer-Spin EPR Studies and Spin-Coupling Analysis of the [4Fe-4S] 0 Cluster of the Fe Protein from Azotobacter vinelandii Nitrogenase
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March 1999
Mackinawite formation from elemental iron and sulfur
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January 2021
How a century of ammonia synthesis changed the world
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September 2008
Catalytic Reduction of CN − , CO, and CO 2 by Nitrogenase Cofactors in Lanthanide-Driven Reactions
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November 2014
Electron paramagnetic resonance study of the vanadium-iron protein of nitrogenase from Azotobacter vinelandii
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October 1987
Structure, Function, and Mechanism of the Nickel Metalloenzymes, CO Dehydrogenase, and Acetyl-CoA Synthase
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February 2014
MgATP-induced conformational changes in the iron protein from Azotobacter vinelandii, as studied by small-angle x-ray scattering.
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February 1994
Electron Transfer in Nitrogenase
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January 2020
R UBISCO : Structure, Regulatory Interactions, and Possibilities for a Better Enzyme
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June 2002
Synthesis of adenine from ammonium cyanide
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June 1960
Catalysis-dependent selenium incorporation and migration in the nitrogenase active site iron-molybdenum cofactor
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December 2015
Reactivity of [Fe 4 S 4 ] Clusters toward C1 Substrates: Mechanism, Implications, and Potential Applications
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April 2019
The Fe-only nitrogenase and the Mo nitrogenase from Rhodobacter capsulatus : A comparative study on the redox properties of the metal clusters present in the dinitrogenase components
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March 2002
Nucleotide Hydrolysis and Protein Conformational Changes in Azotobacter vinelandii Nitrogenase Iron Protein: Defining the Function of Aspartate 129
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August 1995
High Energy Radical Chemistry Formation of HCN-rich Atmospheres on early Earth
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July 2017
Comparative Biochemical Characterization of the Iron-Only Nitrogenase and the Molybdenum Nitrogenase from Rhodobacter Capsulatus
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March 1997
New insights into structure-function relationships in nitrogenase: a 1.6 Å resolution X-ray crystallographic study of Klebsiella pneumoniae MoFe-protein
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October 1999
Redox and spectroscopic properties of oxidized MoFe protein from Azotobacter vinelandii
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October 1980
Tracing the Hydrogen Source of Hydrocarbons Formed by Vanadium Nitrogenase
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April 2011
Direct Assessment of the Reduction Potential of the [4Fe−4S] 1+/0 Couple of the Fe Protein from Azotobacter v inelandii
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October 2002
Detection of EPR signals assigned to the 1-equiv-oxidized P-clusters of the nitrogenase MoFe-protein from Azotobacter vinelandii
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October 1993
The chemical mechanism of nitrogenase: calculated details of the intramolecular mechanism for hydrogenation of η2-N2 on FeMo-co to NH3
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January 2008
Earth's early atmosphere
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February 1993
Electrocatalytic CO2 reduction catalyzed by nitrogenase MoFe and FeFe proteins
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April 2018
Investigation of CO bound to inhibited forms of nitrogenase MoFe protein by 13C ENDOR
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August 1995
Carbonyl sulfide and carbon dioxide as new substrates, and carbon disulfide as a new inhibitor, of nitrogenase
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April 1995
Mössbauer characterization of the metal clusters in Azotobacter vinelandii nitrogenase VFe protein.
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August 1994
Crystal structure of the Acidaminococcus fermentans 2-hydroxyglutaryl-CoA dehydratase component A
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March 2001
Structural evidence for a dynamic metallocofactor during N 2 reduction by Mo-nitrogenase
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June 2020
CO Binding to the FeV Cofactor of CO‐Reducing Vanadium Nitrogenase at Atomic Resolution
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October 2020
Isolation of Two Forms of the Nitrogenase VFe Protein from Azotobacter vinelandii †
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January 1996
A bound reaction intermediate sheds light on the mechanism of nitrogenase
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March 2018
Nitrogenase Complexes: Multiple Docking Sites for a Nucleotide Switch Protein
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August 2005
Redox reactions of the nitrogenase complex from Azotobacter vinelandii
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August 1983
Cadmium(II) Removal by Mackinawite under Anoxic Conditions
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May 2021
Extending the Carbon Chain: Hydrocarbon Formation Catalyzed by Vanadium/Molybdenum Nitrogenases
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August 2011
Direct Prebiotic Pathway to DNA Nucleosides
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June 2019
Mackinawite‐Supported Reduction of C1 Substrates into Prebiotically Relevant Precursors
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June 2022
The vanadium nitrogenase of Azotobacter chroococcum . Purification and properties of the Fe protein
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November 1988
Structural Characterization of Two CO Molecules Bound to the Nitrogenase Active Site
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January 2021
Structural Basis of Biological Nitrogen Fixation
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January 1996
Electron-transfer studies involving flavodoxin and a natural redox partner, the iron protein of nitrogenase. Conformational constraints on protein-protein interactions and the kinetics of electron transfer within the protein complex
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July 1988
Surface chemistry and structural properties of mackinawite prepared by reaction of sulfide ions with metallic iron
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March 2002
Time-Resolved Binding of Carbon Monoxide to Nitrogenase Monitored by Stopped-Flow Infrared Spectroscopy
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July 1997
Evaluation of the Catalytic Relevance of the CO-Bound States of V-Nitrogenase
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March 2018
Role of CO2 in the initiation of chain growth and alcohol formation during the Fischer-Tropsch synthesis
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June 1997
Unique features of the nitrogenase VFe protein from Azotobacter vinelandii
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May 2009
Electrochemical Characterization of Isolated Nitrogenase Cofactors from Azotobacter vinelandii
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October 2019
Structural and Mechanistic Insights into CO 2 Activation by Nitrogenase Iron Protein
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September 2019
Photo-lability of CO bound to Mo-nitrogenase from Azotobacter vinelandii
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January 2003
Complete reduction of carbon dioxide to carbon using cation-excess magnetite
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July 1990
Nitrogenase XII. Mössbauer studies of the MoFe protein from Clostridium pasteurianum W5
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May 1980
EPR spectroscopic characterization of an ‘iron only⌉ nitrogenase S = 3/2 spectrum of component 1 isolated from Rhodobacter capsulatus
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May 1992
Evidence for Interstitial Carbon in Nitrogenase FeMo Cofactor
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November 2011
Synthesis and Rietveld crystal structure refinement of mackinawite, tetragonal FeS
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December 1995
The FeMoco-deficient MoFe Protein Produced by a nifH Deletion Strain of Azotobacter vinelandii Shows Unusual P-cluster Features
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April 2002
A comprehensive mechanism for the Fischer-Tropsch synthesis
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October 1981
Effect of high pN2 and high pD2 on ammonia production, hydrogen evolution, and hydrogen deuteride formation by nitrogenases
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February 1985
Second and Outer Coordination Sphere Effects in Nitrogenase, Hydrogenase, Formate Dehydrogenase, and CO Dehydrogenase
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July 2022
Crystallographic structure of the nitrogenase iron protein from Azotobacter vinelandii
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September 1992
Synergic Binding of Carbon Monoxide and Cyanide to the FeMo Cofactor of Nitrogenase: Relic Chemistry of an Ancient Enzyme?
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October 2004
Reductive Elimination of H 2 Activates Nitrogenase to Reduce the N≡N Triple Bond: Characterization of the E 4 (4H) Janus Intermediate in Wild-Type Enzyme
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August 2016
Mössbauer, EPR, and magnetization studies of the Azotobacter vinelandii Fe protein. Evidence for a [4Fe-4S]1+ cluster with spin S = 3/2.
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September 1985
Goodbye to the Warm Little Pond?
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November 1990
The structure of disordered mackinawite
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November 2003
The chemical mechanism of nitrogenase: hydrogen tunneling and further aspects of the intramolecular mechanism for hydrogenation of η2-N2 on FeMo-co to NH3
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January 2008
Mimicking the surface and prebiotic chemistry of early Earth using flow chemistry
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May 2018
Strategies Towards Capturing Nitrogenase Substrates and Intermediates via Controlled Alteration of Electron Fluxes
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December 2018
Characterization of Isolated Nitrogenase FeVco
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September 2010
Studies by electron paramagnetic resonance on the catalytic mechanism of nitrogenase of Klebsiella pneumoniae
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October 1973
The mechanism of Klebsiella pneumoniae nitrogenase action. Pre-steady-state kinetics of H2 formation
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December 1984
The mechanism of Klebsiella pneumoniae nitrogenase action. The determination of rate constants required for the simulation of the kinetics of N2 reduction and H2 evolution
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December 1984
Evidence of substrate binding and product release via belt-sulfur mobilization of the nitrogenase cofactor
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May 2022
A Mechanism for Nitrogenase Including Loss of a Sulfide
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February 2022
On the ATP-Dependent Activation of the Radical Enzyme (R )-2-Hydroxyisocaproyl-CoA Dehydratase
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August 2012
Characterization of a Nitrogenase Iron Protein Substituted with a Synthetic [Fe 4 Se 4 ] Cluster
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March 2022
Mechanism of N 2 Reduction Catalyzed by Fe-Nitrogenase Involves Reductive Elimination of H 2
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January 2018
Establishing a Thermodynamic Landscape for the Active Site of Mo-Dependent Nitrogenase
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October 2019
Rethinking the Nitrogenase Mechanism: Activating the Active Site
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November 2019
Differential Reduction of CO 2 by Molybdenum and Vanadium Nitrogenases
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September 2014
Reduction of C 1 Substrates to Hydrocarbons by the Homometallic Precursor and Synthetic Mimic of the Nitrogenase Cofactor
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January 2017
Chemistry of Iron Sulfides
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February 2007
Structural Models of the [Fe 4 S 4 ] Clusters of Homologous Nitrogenase Fe Proteins
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August 2011
The rocky roots of the acetyl-CoA pathway
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July 2004
Isolation of an iron-molybdenum cofactor from nitrogenase
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August 1977
Nitrogenases—A Tale of Carbon Atom(s)
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May 2016
Origin and evolution of the atmospheres of early Venus, Earth and Mars
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May 2018
Iron-sulfur clusters in the molybdenum-iron protein component of nitrogenase. Electron paramagnetic resonance of the carbon monoxide inhibited state
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October 1979
Identification of the CO-Binding Cluster in Nitrogenase MoFe Protein by ENDOR of 57 Fe Isotopomers
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January 1996
Origin of Life’s Building Blocks in Carbon- and Nitrogen-Rich Surface Hydrothermal Vents
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January 2019
CO Binding to the FeMo Cofactor of CO-Inhibited Nitrogenase: 13 CO and 1 H Q-Band ENDOR Investigation
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October 1997
Rates of fixation by lightning of carbon and nitrogen in possible primitive atmospheres
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December 1981
ADP‐ribosylation, a mechanism regulating nitrogenase activity
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May 2013
The nitrogenase FeMo-cofactor and P-cluster pair: 2.2 A resolution structures
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May 1993
Nitrogenase reactivity: insight into the nitrogen-fixing process through hydrogen-inhibition and HD-forming reactions
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September 1981
How does vanadium nitrogenase reduce CO to hydrocarbons?
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January 2011
Nitrogenase: the reaction between iron protein and bathophenanthrolinedisulfonate as a probe for interactions with MgATP
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May 1978
Lead and Cadmium Interactions with Mackinawite: Retention Mechanisms and the Role of pH
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March 2000
Reactivity of CO 2 on the surfaces of magnetite (Fe 3 O 4 ), greigite (Fe 3 S 4 ) and mackinawite (FeS)
Santos-Carballal, David; Roldan, Alberto; Dzade, Nelson Y.
Philosophical Transactions of the Royal Society A: Mathematical, Physical and Engineering Sciences, Vol. 376, Issue 2110
https://doi.org/10.1098/rsta.2017.0065
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November 2017
Mechanisms of Arsenic Uptake from Aqueous Solution by Interaction with Goethite, Lepidocrocite, Mackinawite, and Pyrite: An X-ray Absorption Spectroscopy Study
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April 2002
The Fe-only nitrogenase from Rhodobacter capsulatus: identification of the cofactor, an unusual, high-nuclearity iron-sulfur cluster, by Fe K-edge EXAFS and 57Fe Mössbauer spectroscopy
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July 2001
Flavodoxin hydroquinone reduces Azotobacter vinelandii Fe protein to the all-ferrous redox state with a S = 0 spin state
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November 2006
IR-Monitored Photolysis of CO-Inhibited Nitrogenase: A Major EPR-Silent Species with Coupled Terminal CO Ligands
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November 2012
Structural analysis of the reductase component AnfH of iron-only nitrogenase from Azotobacter vinelandii
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February 2022
Activation and reduction of carbon dioxide by nitrogenase iron proteins
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November 2016
Novel metal cluster in the iron-molybdenum cofactor of nitrogenase. Spectroscopic evidence
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February 1978
Kinetics of MgATP-dependent Iron Chelation from the Fe-protein of the Azotobacter vinelandii Nitrogenase Complex
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April 1989
X-ray Emission Spectroscopy Evidences a Central Carbon in the Nitrogenase Iron-Molybdenum Cofactor
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November 2011
Special Issue on Nitrogenases and Homologous Systems
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May 2020
Iron-Only and Vanadium Nitrogenases: Fail-Safe Enzymes or Something More?
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September 2020
Evidence for a dynamic role for homocitrate during nitrogen fixation: the effect of substitution at the α-Lys426 position in MoFe-protein of Azotobacter vinelandii
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June 2006
Organic Compound Synthes on the Primitive Eart: Several questions about the origin of life have been answered, but much remains to be studied
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July 1959
A review of harvesting clean fuels from enzymatic CO 2 reduction
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January 2016
Current and future role of Haber–Bosch ammonia in a carbon-free energy landscape
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January 2020
Mechanistic insights into nitrogen fixation by nitrogenase enzymes
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January 2015
The vanadium-iron protein of vanadium nitrogenase from Azotobacter chroococcum contains an iron-vanadium cofactor
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February 1988
Probing the All-Ferrous States of Methanogen Nitrogenase Iron Proteins
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December 2020
Electron Paramagnetic Resonance of Nitrogenase and Nitrogenase Components from Clostridium pasteurianum W5 and Azotobacter vinelandii OP
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November 1972
Site‐Specific Oxidation State Assignments of the Iron Atoms in the [4Fe:4S] 2+/1+/0 States of the Nitrogenase Fe‐Protein
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March 2019
CO 2 Adsorption on Magnetite Fe 3 O 4 (111)
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November 2018
Tuning Electron Flux through Nitrogenase with Methanogen Iron Protein Homologues
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October 2017
Cometary Delivery of Hydrogen Cyanide to the Early Earth
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September 2020
Nitrogenase and homologs
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December 2014
Structure of ADP·AIF4–-stabilized nitrogenase complex and its implications for signal transduction
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May 1997
The case for the chemoautotrophic origin of life in an iron-sulfur world
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March 1990
Common origins of RNA, protein and lipid precursors in a cyanosulfidic protometabolism
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March 2015
Crystallographic structure and functional implications of the nitrogenase molybdenum–iron protein from Azotobacter vinelandii
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December 1992
Synthesis of long prebiotic oligomers on mineral surfaces
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May 1996
Characterization of an M-Cluster-Substituted Nitrogenase VFe Protein
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March 2018
P-cluster maturation on nitrogenase MoFe protein
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June 2007
Role of water-gas-shift reaction in Fischer–Tropsch synthesis on iron catalysts: A review
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October 2016
Vanadium nitrogenase: A two-hit wonder?
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January 2012
The vanadium nitrogenase of Azotobacter chroococcum. Purification and properties of the VFe protein
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May 1987
Mössbauer and EPR Evidence for an All-Ferrous Fe 4 S 4 Cluster with S = 4 in the Fe Protein of Nitrogenase
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September 1997
The structure of vanadium nitrogenase reveals an unusual bridging ligand
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July 2017
Spectroscopic evidence for an all-ferrous [4Fe–4S]0 cluster in the superreduced activator of 2-hydroxyglutaryl-CoA dehydratase from Acidaminococcus fermentans
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February 2008
Activated Acetic Acid by Carbon Fixation on (Fe,Ni)S Under Primordial Conditions
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April 1997
Structural characterization of the P 1+ intermediate state of the P-cluster of nitrogenase
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May 2018
Density Functional Theory Study of an All Ferrous 4Fe-4S Cluster
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May 2011
Biosynthesis of Nitrogenase Metalloclusters
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December 2013
A pathway for biological methane production using bacterial iron-only nitrogenase
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January 2018
Evidence for early life in Earth’s oldest hydrothermal vent precipitates
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March 2017
Uncoupling binding of substrate CO from turnover by vanadium nitrogenase
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October 2015
Protocols for Cofactor Isolation of Nitrogenase
book
January 2011
Mechanism of Nitrogen Fixation by Nitrogenase: The Next Stage
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January 2014
Structural Evidence for Asymmetrical Nucleotide Interactions in Nitrogenase
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December 2014
EPR and Mössbauer studies of nucleotide-bound nitrogenase iron protein from Azotobacter vinelandii.
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November 1987
Combining a Nitrogenase Scaffold and a Synthetic Compound into an Artificial Enzyme
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October 2015
Electrochemical characterization of the iron-molybdenum cofactor from Azotobacter vinelandii nitrogenase
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September 1985
Electroenzymatic C–C Bond Formation from CO 2
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April 2018
Photochemistry of methane and the formation of hydrocyanic acid (HCN) in the Earth's early atmosphere
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February 1986
Reactivity, Mechanism, and Assembly of the Alternative Nitrogenases
journal
March 2020
Distantly related sequences in the alpha- and beta-subunits of ATP synthase, myosin, kinases and other ATP-requiring enzymes and a common nucleotide binding fold.
journal
August 1982
Incorporation of an Asymmetric Mo−Fe−S Cluster as an Artificial Cofactor into Nitrogenase
journal
August 2022
Stoichiometry and spectral properties of the molybdenum-iron (MoFe) cofactor and noncofactor redox centers in the molybdenum-iron (MoFe) protein of nitrogenase from Azotobacter vinelandii
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December 1981
Photolysis of Hi-CO Nitrogenase - Observation of a Plethora of Distinct CO Species Using Infrared Spectroscopy
journal
March 2011
The mechanism of Klebsiella pneumoniae nitrogenase action. Pre-steady-state kinetics of an enzyme-bound intermediate in N2 reduction and of NH3 formation
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December 1984
Nitrogenase loosens its belt to fix dinitrogen
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May 2022
A Possible Prebiotic Formation of Ammonia from Dinitrogen on Iron Sulfide Surfaces
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April 2003
Fischer-Tropsch Chemistry at Room Temperature?
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July 2011
Radical SAM-Dependent Carbon Insertion into the Nitrogenase M-Cluster
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September 2012
A highly reactive precursor in the iron sulfide system
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August 2018
Enhanced Efficiency of ATP Hydrolysis during Nitrogenase Catalysis Utilizing Reductants That Form the All-Ferrous Redox State of the Fe Protein
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October 1999
The mechanism of Klebsiella pneumoniae nitrogenase action. Simulation of the dependences of H2-evolution rate on component-protein concentration and ratio and sodium dithionite concentration
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December 1984
Nitrogenase reactivity with P-cluster variants
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September 2005
Redox properties and EPR spectroscopy of the P clusters of Azotobacter vinelandii MoFe protein
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February 1993
A V‐Nitrogenase Variant Containing a Citrate‐Substituted Cofactor
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December 2019
Insights into Nucleotide Signal Transduction in Nitrogenase: Structure of an Iron Protein with MgADP Bound † , ‡
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December 2000
Nitrogenase of Azotobacter vinelandii : Kinetic Analysis of the Fe Protein Redox Cycle †
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December 1998
Steric Control of the Hi-CO MoFe Nitrogenase Complex Revealed by Stopped-Flow Infrared Spectroscopy
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November 2010
Reduction and Condensation of Aldehydes by the Isolated Cofactor of Nitrogenase
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October 2018
A role for nickel–iron cofactors in biological carbon monoxide and carbon dioxide utilization
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April 2011
Insights into Hydrocarbon Formation by Nitrogenase Cofactor Homologs
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April 2015
The iron-molybdenum cofactor of nitrogenase
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December 1990
Ambient conversion of CO2 to hydrocarbons by biogenic and synthetic [Fe4S4] clusters
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May 2018
Activation of CO 2 by Vanadium Nitrogenase
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June 2017
ATP-independent substrate reduction by nitrogenase P-cluster variant
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April 2012
Redox-Dependent Structural Changes in the Nitrogenase P-Cluster † , ‡
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February 1997
P + State of Nitrogenase P-Cluster Exhibits Electronic Structure of a [Fe 4 S 4 ] + Cluster
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August 2012
Widening the Product Profile of Carbon Dioxide Reduction by Vanadium Nitrogenase
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August 2015
An All-ferrous State of the Fe Protein of Nitrogenase: INTERACTION WITH NUCLEOTIDES AND ELECTRON TRANSFER TO THE MoFe PROTEIN
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October 1998
How the [NiFe 4 S 4 ] Cluster of CO Dehydrogenase Activates CO 2 and NCO −
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April 2015
Origin of the RNA world: The fate of nucleobases in warm little ponds
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October 2017
Crystal structure of VnfH, the iron protein component of vanadium nitrogenase
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August 2018
Molybdenum Nitrogenase Catalyzes the Reduction and Coupling of CO to Form Hydrocarbons
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March 2011
Structure−Function Relationships of Alternative Nitrogenases
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January 1996
Nucleic Acids Bind to Nanoparticulate iron (II) Monosulphide in Aqueous Solutions
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April 2008
Reactivity of Carbon Monoxide Dehydrogenase from Rhodospirillum rubrum with Carbon Dioxide, Carbonyl Sulfide, and Carbon Disulfide
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April 1995
The Critical E 4 State of Nitrogenase Catalysis
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July 2018
A Comparative Analysis of the CO-Reducing Activities of MoFe Proteins Containing Mo- and V-Nitrogenase Cofactors
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February 2018
Iron EXAFS of Azotobacter vinelandii nitrogenase molybdenum-iron and vanadium-iron proteins
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June 1993
Nitrogenase reactivity: effects of component ratio on electron flow and distribution during nitrogen fixation
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September 1981
On reversible H2 loss upon N2 binding to FeMo-cofactor of nitrogenase
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September 2013