Orii Chika, Takenaka Shinji, Murakami Shuichiro, Aoki Kenji
Division of Science of Biological Resources, Graduate School of Science and Technology, Kobe University, Rokko, Nada-ku, Kobe, Japan.
Biosci Biotechnol Biochem. 2006 Nov;70(11):2653-61. doi: 10.1271/bbb.60264. Epub 2006 Nov 7.
Bordetella sp. strain 10d metabolizes 4-amino-3-hydroxybenzoic acid via 2-hydroxymuconic 6-semialdehyde. Cell extracts from 4-amino-3-hydroxybenzoate-grown cells showed high NAD(+)-dependent 2-hydroxymuconic 6-semialdehyde dehydrogenase, 4-oxalocrotonate tautomerase, 4-oxalocrotonate decarboxylase, and 2-oxopent-4-enoate hydratase activities, but no 2-hydroxymuconic 6-semialdehyde hydrolase activity. These enzymes involved in 4-amino-3-hydroxybenzoate metabolism were purified and characterized. When 2-hydroxymuconic 6-semialdehyde was used as substrate in a reaction mixture containing NAD(+) and cell extracts from 4-amino-3-hydroxybenzoate-grown cells, 4-oxalocrotonic acid, 2-oxopent-4-enoic acid, and 4-hydroxy-2-oxovaleric acid were identified as intermediates, and pyruvic acid was identified as the final product. A complete pathway for the metabolism of 4-amino-3-hydroxybenzoic acid in strain 10d is proposed. Strain 10d metabolized 2-hydroxymuconic 6-semialdehyde derived from 4-amino-3-hydroxybenzoic acid via a dehydrogenative route, not via a hydrolytic route. This proposed metabolic pathway differs considerably from the modified meta-cleavage pathway of 2-aminophenol and those previously reported for methyl- and chloro-derivatives.
博德特氏菌属菌株10d通过2-羟基粘康酸6-半醛代谢4-氨基-3-羟基苯甲酸。以4-氨基-3-羟基苯甲酸培养的细胞提取物显示出高NAD⁺依赖性的2-羟基粘康酸6-半醛脱氢酶、4-草酰巴豆酸互变异构酶、4-草酰巴豆酸脱羧酶和2-氧代戊-4-烯酸水合酶活性,但没有2-羟基粘康酸6-半醛水解酶活性。对这些参与4-氨基-3-羟基苯甲酸代谢的酶进行了纯化和表征。当在含有NAD⁺和以4-氨基-3-羟基苯甲酸培养的细胞提取物的反应混合物中使用2-羟基粘康酸6-半醛作为底物时,4-草酰巴豆酸、2-氧代戊-4-烯酸和4-羟基-2-氧代戊酸被鉴定为中间体,丙酮酸被鉴定为最终产物。提出了菌株10d中4-氨基-3-羟基苯甲酸代谢的完整途径。菌株10d通过脱氢途径而非水解途径代谢源自4-氨基-3-羟基苯甲酸的2-羟基粘康酸6-半醛。该提出的代谢途径与2-氨基苯酚的修饰间位裂解途径以及先前报道的甲基和氯衍生物的代谢途径有很大不同。