Abstract
Examination of interactions among various substrates and inhibitors reacting with a partially purified nitrogenase from Azotobacter vinelandii has shown that: nitrous oxide is competitive with N2; carbon monixide and acetylene are noncompetitive with N2; carbon monoxide, cyanide, and nitrous oxide are noncompetitive with acetylene, whereas N2 is competitive with acetylene; carbon monoxide is noncompetitive with cyanide, whereas azide is competitive with cyanide; acetylene and nitrous oxide increase the rate of reduction of cyanide. The results are understandable if nitrogenase serves as an electron sink and substrates and inhibitors bind at multiple modified sites on reduced nitrogenase. It is suggested that substrates such as acetylene may be reduced by a less completely reduced electron sink than is required for the six-electron transfer necessary to reduce N2.
MeSH Terms
Acetylene/metabolism,pharmacology
Azides/metabolism,pharmacology
Azotobacter/enzymology
Binding Sites
Binding, Competitive
Carbon Monoxide/pharmacology
Cyanides/metabolism
Depression, Chemical
Hydrogen/metabolism
Kinetics
Nitrogen/metabolism,pharmacology
Nitrogenase/antagonists & inhibitors,metabolism
Nitrous Oxide/pharmacology
Chemicals
Azides
Cyanides
Carbon Monoxide
Hydrogen
Nitrogenase
Nitrous Oxide
Nitrogen
Acetylene
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Rivera-Ortiz J M
Burris R H
References (22)
22 references, click to expand
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