Abstract
The apparent Michaelis constants [K'(N(2)) and K'(C(2)H(2))] and the corresponding apparent maximum velocity values (V') for soya-bean bacteroid nitrogenase increased concomitantly in response to increases in nitrogenase Fe-protein concentration and ATP concentration in cell-free assays and in response to O(2) pressure in intact nodules and bacteroid suspensions. K'(C(2)H(2)) in cell-free assays was also affected by pH and by Na(2)S(2)O(4) concentration. Nitrogenase Fe-protein behaved as a catalytic effector reacting at interacting sites on the nitrogenase Fe-Mo-protein. The results indicated that the Fe-Mo-protein probably bears the catalytic sites for N(2) and C(2)H(2) reduction. It is concluded that reduction of N(2) or C(2)H(2) by this nitrogenase involves a reaction mechanism with a sequence of unknown order. The sequence in which substrate, enzyme, effector, ATP and reductant react determines which of the various rate-constants are involved in the apparent Michaelis constant, whose true kinetic meaning was thus unresolved.
MeSH Terms
Adenosine Triphosphate/pharmacology
Anaerobiosis
Bacteroides/drug effects,enzymology
Binding Sites
Chromatography, Gel
Dithiothreitol/pharmacology
Enzyme Activation
Hydrogen-Ion Concentration
Iron
Kinetics
Mathematics
Models, Biological
Molybdenum
Nitrogen
Nitrogen Fixation
Nitrogen Isotopes
Oxidoreductases/metabolism
Oxygen
Plants
Protein Binding
Soybeans
Thiosulfates/pharmacology
Chemicals
Nitrogen Isotopes
Thiosulfates
Molybdenum
Adenosine Triphosphate
Iron
Oxidoreductases
Nitrogen
Oxygen
Dithiothreitol
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Bergersen F J
Turner G L
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18 references, click to expand
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