The role of tungstate and/or molybdate in the formation of aldehyde oxidoreductase in Clostridium thermoaceticum and other acetogens; immunological distances of such enzymes
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[1] F. Lottspeich,et al. The tungsten-containing aldehyde oxidoreductase from Clostridium thermoaceticum and its complex with a viologen-accepting NADPH oxidoreductase. , 1992, Biological chemistry Hoppe-Seyler.
[2] F. Lottspeich,et al. Purification and some properties of the tungsten-containing carboxylic acid reductase from Clostridium formicoaceticum. , 1991, Biological chemistry Hoppe-Seyler.
[3] S Mukund,et al. The novel tungsten-iron-sulfur protein of the hyperthermophilic archaebacterium, Pyrococcus furiosus, is an aldehyde ferredoxin oxidoreductase. Evidence for its participation in a unique glycolytic pathway. , 1991, The Journal of biological chemistry.
[4] M. Adams,et al. Characterization of a tungsten-iron-sulfur protein exhibiting novel spectroscopic and redox properties from the hyperthermophilic archaebacterium Pyrococcus furiosus. , 1990, The Journal of biological chemistry.
[5] H. Simon,et al. Carboxylic acid reductase: a new tungsten enzyme catalyses the reduction of non-activated carboxylic acids to aldehydes. , 1989, European journal of biochemistry.
[6] D. M. Ward,et al. Comparative Analysis of 16S Ribosomal RNA Sequences of Thermophilic Fermentative Bacteria Isolated from Hot Spring Cyanobacterial Mats , 1989 .
[7] G. Krause,et al. Design and Applications of Sensitive Enzyme Immunoassays Specific for Clostridial Enoate Reductases , 1989, Zeitschrift fur Naturforschung. C, Journal of biosciences.
[8] H. Simon,et al. Reduction of 2‐Enoates and Alkanoates with Carbon Monoxide or Formate, Viologens, and Clostridium thermoaceticum to Saturated Acids and Unsaturated and Saturated Alcohols , 1987 .
[9] M. Savage,et al. Adaptation of the acetogen Clostridium thermoautotrophicum to minimal medium , 1986, Journal of bacteriology.
[10] J. Zeikus. Metabolism of one-carbon compounds by chemotrophic anaerobes. , 1983, Advances in microbial physiology.
[11] D. Northcote,et al. Minimization of variation in the response to different proteins of the Coomassie blue G dye-binding assay for protein. , 1981, Analytical biochemistry.
[12] J. Cárdenas,et al. Determination of molybdenum and tungsten in biological materials. , 1974, Analytical biochemistry.
[13] J. R. Partington,et al. Gmelins Handbluch der anorganischen , 1934 .
[14] Ekkehard Fluck,et al. Gmelins Handbuch der anorganischen Chemie , 1931, Nature.