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Catabolism of Naphthalenesulfonic Acids by Pseudomonas sp. A3 and Pseudomonas sp. C22

机译:假单胞菌属(Pseudomonas sp。)分解萘磺酸。 A3和假单胞菌sp。 C22

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摘要

Naphthalene and two naphthalenesulfonic acids were degraded by Pseudomonas sp. A3 and Pseudomonas sp. C22 by the same enzymes. Gentisate is a major metabolite. Catabolic activities for naphthalene, 1-naphthalenesulfonic acid, and 2-naphthalenesulfonic acid are induced by growth with naphthalene, 1-naphthalenesulfonic acid, 2-naphthalenesulfonic acid, methylnaphthalene, or salicylate. Gentisate is also an inducer in strain A3. Inhibition kinetics show that naphthalene and substituted naphthalenes are hydroxylated by the same naphthalene dioxygenase. Substrates with nondissociable substituents such as CH3, OCH3, Cl, or NO2 are hydroxylated in the 7,8-position, and 4-substituted salicylates are accumulated. If CO2H, CH2CO2H, or SO3H are substituents, hydroxylation occurs with high regioselectivity in the 1,2-position. Thus, 1,2-dihydroxy-1,2-dihydronaphthalene-2-carboxylic acids are formed quantitatively from the corresponding naphthalenecarboxylic acids. Utilization of naphthalenesulfonic acids proceeds by the same regioselective 1,2-dioxygenation which labilizes the C—SO3 bond and eliminates sulfite.
机译:假单胞菌将萘和两种萘磺酸降解。 A3和假单胞菌sp。 C22由相同的酶组成。 Gentisate是主要的代谢产物。萘,1-萘磺酸,2-萘磺酸,2-萘磺酸,甲基萘或水杨酸盐的生长诱导萘,1-萘磺酸和2-萘磺酸的分解代谢活性。 Gentisate还是菌株A3的诱导剂。抑制动力学表明,萘和取代的萘被相同的萘双加氧酶羟化。具有不可离解的取代基(例如CH3,OCH3,Cl或NO2)的底物在7,8位羟基化,并积累了4个取代的水杨酸酯。如果CO2H,CH2CO2H或SO3H是取代基,则在1,2-位具有高区域选择性地发生羟基化。因此,由相应的萘羧酸定量地形成1,2-二羟基-1,2-二氢萘-2-羧酸。萘磺酸的利用是通过相同的区域选择性1,2-二加氧进行的,该区域使C-SO3 -键不起作用,并消除了亚硫酸盐。

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