6-Hydroxynicotinic acid as an intermediate in the oxidation of nicotinic acid by Pseudomonas fluorescens

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منابع مشابه

The oxidation of nicotinic acid by Pseudomonas fluorescens.

Morgan, W. T. J. & Elson, L. A. (1934). Biochem. J. 28,988. Morgan, W. T. J. & Partridge, S. M. (1940). Biochem. J. 34, 169. Morgan, W. T. J. & Partridge, S. M. (1941a). Biochem. J. 35, 1140. Morgan, W. T. J. & Partridge, S. M. (1941 b). Chem. & Ind. 60, 722. Partridge, S. M. (1948). Biochem. J. 42, 251. Partridge, S. M. & Morgan, W. T. J. (1940). Brit. J. exp. Path. 21, 180. Sevag, M. G. (1934...

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Oxidation of nicotinic acid by a Bacillus species: purification and properties of nicotinic acid and 6-hydroxynicotinic acid hydroxylases.

The enzymes of a Bacillus species that hydroxylate nicotinic acid to 6-hydroxynicotinic acid and 6-hydroxynicotinic acid to 2,6-dihydroxynicotinic acid were purified and characterized. The purified enzymes contained approximately two molecules of flavine and eight molecules of iron per molecule of enzyme. The enzymes were large (molecular weight, 400,000 to 450,000) and appeared to consist of s...

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Oxidation of nicotinic acid by a Bacillus species: regulation of nicotinic acid and 6-hydroxynicotinic acid hydroxylases.

The first two enzymes employed by a Bacillus species for the dissimilation of nicotinic acid are coordinately induced. The inducer of the enzymes appears to be 6-hydroxynicotinic acid, the product of the first enzyme in the pathways. Synthesis of the enzymes is repressed by glucose when ammonium is present in the medium, but not when nicotinic acid is the sole nitrogen source. The possible sign...

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The hydroxylation of nicotinic acid by Pseudomonas fluorescens.

Fischer, E. (1950). Proc. of Symposium: Le Mu8cle. Ed. Schapira, G. Paris: L'Expansion scientifique fran9aise. Gornall, A. G., Bardawill, C. I. & David, M. M. (1949). J. biol. Chem. 177, 751. Guba, F. & Straub, F. B. (1943). Stud. In8t. med. Chem. Univ. Szeged, 3, 46. Houchin, 0. B. & Mattill, H. A. (1942). J. biol. Chem. 146, 301. Mommaerts, W. F. H. M. & Parrish, G. R. (1951). J. biol. Chem. ...

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Oxidation of nicotinic acid by a Bacillus species: source of oxygen atoms for the hydroxylation of nicotinic acid and 6-hydroxynicotinic acid.

Three types of evidence are presented to show that the enzymes that hydroxylate nicotinic acid to 2,6-dihydroxynicotinic acid use water as a source of oxygen atoms. (18)O is incorporated into the products from H(2) (18)O. Molecular oxygen acts as a terminal electron acceptor, one-half molecule being consumed per molecule of hydroxyl groups incorporated. An external electron acceptor is required...

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ژورنال

عنوان ژورنال: Biochemical Journal

سال: 1955

ISSN: 0306-3283

DOI: 10.1042/bj0600303