Biochimica et Biophysica Acta 1990-05-16

Mechanism of reaction of 3-hydroxyanthranilic acid with molecular oxygen.

M K Manthey, S G Pyne, R J Truscott

Index: Biochim. Biophys. Acta 1034(2) , 207-12, (1990)

Full Text: HTML

Abstract

The autoxidation of the tryptophan metabolite, 3-hydroxyanthranilic acid, at pH 7 gives rise to a p-quinone dimer and cinnabarinic acid. A novel dimer formed by radical-radical coupling of 3-hydroxyanthranilic acid is also produced. Labelling studies have shown that the C-2 oxygen in the p-quinone dimer is derived from molecular oxygen. A product versus time study of this reaction has revealed that, in the absence of catalase, cinnabarinic acid is formed but undergoes decomposition by hydrogen peroxide. At pH 7, in the presence of catalase, both the p-quinone dimer and cinnabarinic acid are formed at approximately the same rate and this rate of formation increases with increasing pH. Inclusion of superoxide dismutase was found to increase the rate of formation of cinnabarinic acid, suggesting that superoxide ions may also cause decomposition of cinnabarinic acid. This was confirmed by treating cinnabarinic acid with superoxide. A mechanism involving a common anthranilyl radical intermediate is proposed to account for the formation of the different oxidation products.


Related Compounds

  • Cinnabarinic acid

Related Articles:

Aminophenoxazinones as inhibitors of indoleamine 2,3-dioxygenase (IDO). Synthesis of exfoliazone and chandrananimycin A.

2013-04-25

[J. Med. Chem. 56(8) , 3310-7, (2013)]

Simultaneous determination of 3-hydroxyanthranilic and cinnabarinic acid by high-performance liquid chromatography with photometric or electrochemical detection.

1992-02-01

[Anal. Biochem. 200(2) , 273-9, (1992)]

Oxidation of 3-hydroxyanthranilic acid to the phenoxazinone cinnabarinic acid by peroxyl radicals and by compound I of peroxidases or catalase.

1992-09-01

[Biochemistry 31(34) , 8090-7, (1992)]

Oxidative reactivity of the tryptophan metabolites 3-hydroxyanthranilate, cinnabarinate, quinolinate and picolinate.

1987-01-15

[Biochem. Pharmacol. 36(2) , 211-7, (1987)]

Novel interaction between laccase and cellobiose dehydrogenase during pigment synthesis in the white rot fungus Pycnoporus cinnabarinus.

1999-02-01

[Appl. Environ. Microbiol. 65(2) , 389-95, (1999)]

More Articles...