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Critical Reactions in Fluorobenzoic Acid Degradation by Pseudomonas sp. B13

机译:假单胞菌属物种在氟代苯甲酸降解中的关键反应B13

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3-Chlorobenzoate-grown cells of Pseudomonas sp. B13 readily cometabolized monofluorobenzoates. A catabolic pathway for the isomeric fluorobenzoates is proposed on the basis of key metabolites isolated. Only 4-fluorobenzoate was utilized and totally degraded after a short period of adaptation. The isoenzymes for total degradation of chlorocatechols, being found during growth with 3-chlorobenzoate or 4-chlorophenol, were not induced in the presence of fluorobenzoates. Correspondingly, only the ordinary enzymes of the benzoate pathway were detected in 4-fluorobenzoate-grown cells. Ring cleavage of 3-fluorocatechol was recognized as a critical step in 3-fluorobenzoate degradation. 2-Fluoro-cis,cis-muconic acid was identified as a dead-end metabolite from 2- and 3-fluorobenzoate catabolism. During 2-fluorobenzoate cometabolism, fluoride is eliminated by the initial dioxygenation.
机译:Pseudomonas sp。的3-氯苯甲酸盐生长的细胞。 B13很容易被新陈代谢的一氟苯甲酸酯。基于分离出的关键代谢物,提出了异构体氟苯甲酸酯的分解代谢途径。在短时间适应后,仅利用了4-氟苯甲酸酯并被完全降解。在3-苯甲酸酯或4-苯酚的生长过程中发现的氯代邻苯二酚的总降解同工酶在氟苯甲酸酯的存在下不会被诱导。相应地,在4-氟苯甲酸酯生长的细胞中仅检测到苯甲酸酯途径的普通酶。 3-氟邻苯二酚的环裂解被认为是3-氟苯甲酸酯降解的关键步骤。 2-氟-顺式,顺式-粘康酸经2-和3-氟苯甲酸酯分解代谢鉴定为死端代谢产物。在2-氟苯甲酸酯代谢过程中,氟化物通过最初的双加氧作用消除。

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