Crawford R L, McCoy E, Harkin J M, Kirk T K, Obst J R
Appl Microbiol. 1973 Aug;26(2):176-84. doi: 10.1128/am.26.2.176-184.1973.
Strain A81 of Nocardia corallina hydroxylates or demethylates p-anisic acid to p-hydroxybenzoic acid and isovanillic acid. It demethylates veratric acid to a mixture of vanillic and isovanillic acids. These are both demethylated to protocatechuic acid, which undergoes ring cleavage to afford beta-carboxy-cis-cis-muconic acid. The intermediacy of protocatechuic acid in the catabolic pathway of veratric acid was confirmed by blocking ring cleavage with an additional substituent in the ring: 5-chlorovanillic acid was demethylated to 5-chloro-protocatechuic acid, which accumulated. Chloro substituents in the ring of other methoxylated benzoic acids also arrested their normal metabolism by the Nocardia: an ortho-chloro substituent thwarted both demethylation and ring-opening. ortho-Hydroxylation of p-methoxybenzoic acid to isovanillic acid was unaffected by a chlorine ortho to the methoxyl group. Washed whole cells of veratric acid-grown N. corallina A81 produced no detected structural changes in an isolated lignin. The implications of this observation are discussed.
珊瑚诺卡氏菌A81菌株将对甲氧基苯甲酸羟基化或去甲基化,生成对羟基苯甲酸和异香草酸。它将藜芦酸去甲基化,生成香草酸和异香草酸的混合物。这两种酸都被去甲基化生成原儿茶酸,原儿茶酸发生环裂解生成β-羧基-顺-顺-粘康酸。通过在环中引入额外取代基阻断环裂解,证实了原儿茶酸在藜芦酸分解代谢途径中的中间体作用:5-氯香草酸被去甲基化生成5-氯原儿茶酸,并积累下来。其他甲氧基苯甲酸环上的氯取代基也阻止了它们被诺卡氏菌正常代谢:邻位氯取代基同时阻碍了去甲基化和开环反应。对甲氧基苯甲酸邻位羟基化生成异香草酸不受甲氧基邻位氯的影响。用藜芦酸培养的珊瑚诺卡氏菌A81的洗涤全细胞对分离出的木质素未检测到结构变化。讨论了这一观察结果的意义。