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Martin Edward Hanke grad student 1938 Chicago
 (The oxidation-reduction potential requirements of a non-spore-forming, obligate anaerobe)
A. Baird Hastings post-doc Harvard Medical School
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Publications

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Shen TC, Ramadoss CS, Vennesland B. (1982) Effect of reduced pyridine nucleotides and tungstate on the in vitro insertion of molybdenum into demolybdo-nitrate reductase of Chlorella vulgaris. Biochimica Et Biophysica Acta. 704: 227-34
Vennesland B, Castric PA, Conn EE, et al. (1982) Cyanide metabolism. Federation Proceedings. 41: 2639-48
Gewitz HS, Piefke J, Langowska K, et al. (1980) The formation of hydrogen cyanide from histidine in the presence of amino acid oxidase and peroxidase. Biochimica Et Biophysica Acta. 611: 11-26
Gewitz HS, Piefke J, Vennesland B. (1978) Nitrate reductase of Chlorella fusca: Partial purification, cytochrome content and presence of HCN after in vivo inactivation. Planta. 141: 323-8
Pistorius EK, Gewitz HS, Voss H, et al. (1976) Reversible inactivation of nitrate reductase in Chlorella vulgaris in vivo. Planta. 128: 73-80
Gewitz HS, Pistorius EK, Voss H, et al. (1976) Cyanide formation in preparations from Chlorella vulgaris Beijerinck: Effect of sonication and amygdalin addition. Planta. 131: 145-8
Guerrero MG, Vennesland B. (1975) Stereospecificity of hydrogen removal from pyridine nucleotide: the reactions catalyzed by nitrate reductase and by xanthine oxidase. Febs Letters. 51: 284-6
Gerster R, Lorimer GH, Vennesland B. (1975) The extra O2 evolved during nitrate utilization by chlorella Plant Science Letters. 5: 255-260
Gewitz HS, Lorimer GH, Solomonson LP, et al. (1974) Presence of HCN in chlorella vulgaris and its possible role in controlling the reduction of nitrate. Nature. 249: 79-81
Solomonson LP, Jetschmann K, Vennesland B. (1973) Reversible inactivation of the nitrate reductase of Chlorella vulgaris Beijerinck. Biochimica Et Biophysica Acta. 309: 32-43
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