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Tungsten, a biologically active metal

Data up to Jan 2025

Published1976
Citations41
References26

Total Citations Per Year

Abstract

References (26)

The purification and properties of formate dehydrogenase and nitrate reductase from Escherichia coli.

1975 • 320 citations

The need for selenite and molybdate in the formation of formic dehydrogenase by members of the Coli-aerogenes group of bacteria

1954 • 255 citations

Formate Dehydrogenase of Clostridium thermoaceticum : Incorporation of Selenium-75, and the Effects of Selenite, Molybdate, and Tungstate on the Enzyme

1973 • 218 citations

Fermentation of Glucose, Fructose, and Xylose by Clostridium thermoaceticum : Effect of Metals on Growth Yield, Enzymes, and the Synthesis of Acetate from CO 2

1973 • 197 citations

Molecular Basis of the Biological Function of Molybdenum

1974 • 156 citations

Clostridium formicoaceticum nov. spec. Isolation, description and distinction from C. aceticum and C. thermoaceticum

1970 • 154 citations

TOTAL SYNTHESIS OF ACETATE FROM CO2 BY HETEROTROPHIC BACTERIA

1969 • 145 citations

The nitrogen-fixing complex of bacteria

1975 • 109 citations

Effects of Molybdate, Tungstate, and Selenium Compounds on Formate Dehydrogenase and Other Enzyme Systems in Escherichia coli

1972 • 92 citations

Molybdenum-containing enzymes

2005 • 90 citations

Nicotinamide Adenine Dinucleotide Phosphate-Dependent Formate Dehydrogenase from Clostridium thermoaceticum: Purification and Properties

1974 • 79 citations

CO2‐reduction to formate by NADPH. The initial step in the total synthesis of acetate from CO2 in Clostridium thermoaceticum

1972 • 77 citations

Fermentation of Fructose and Synthesis of Acetate from Carbon Dioxide by Clostridium formicoaceticum

1972 • 74 citations

Tungsten incorporation into Azotobacter vinelandii nitrogenase

1973 • 73 citations

Tungsten, a component of active formate dehydrogenase from Clostridium thermoaceticum

1975 • 72 citations

Molecular Basis of the Biological Function of Molybdenum

1974 • 71 citations

The effect of ferrous ions, tungstate and selenite on the level of formate dehydrogenase inClostridium formicoaceticum and formate synthesis from CO2 during pyruvate fermentation

1974 • 70 citations

Carbon assimilation by Pseudomonas oxalaticus (OX 1). 2. Formate and carbon dioxide utilization by cell-free extracts of the organism grown on formate

1959 • 64 citations

Total Synthesis of Acetate from CO2

1973 • 64 citations

Tris(dimethylaminato)tris(N,N-dimethylcarbamato)tungsten(VI). Product of the remarkable reaction between hexakis(dimethylaminato)tungsten and carbon dioxide

1974 • 39 citations

Effect of Tungsten and Vanadium on the in Vitro Assembly of Assimilatory Nitrate Reductase Utilizing Neurospora Mutant nit-1

1974 • 38 citations

Reduced Ferredoxin: CO 2 Oxidoreductase from Clostridium pasteurianum: Its Role in Formate Metabolism

1974 • 20 citations

Some Properties of Formate Dehydrogenase

1972 • 19 citations

A changed nitrogenase activity in Rhodospirillum rubrum after substitution of tungsten for molybdenum

1974 • 17 citations

Reduced Ferredoxin:CO2Oxidoreductase FromClostridium pasteurianum.Effect of Ligands to Transition Metals on the Activity and the Stability of the Enzyme

1975 • 17 citations

Molybdenum and iron as functional constituents of the enzymes of the nitrate-reducing system of Azotobacter chroococcum

1975 • 10 citations

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Tungsten, a biologically active metal (1976) – Trends in Biochemical Sciences | Metascience Observatory Explorer