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首页> 外文期刊>Applied and Environmental Microbiology >Methylation of Halogenated Phenols and Thiophenols by Cell Extracts of Gram-Positive and Gram-Negative Bacteria
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Methylation of Halogenated Phenols and Thiophenols by Cell Extracts of Gram-Positive and Gram-Negative Bacteria

机译:革兰氏阳性细菌和革兰氏阴性细菌的细胞提取物对卤代酚和硫酚的甲基化作用

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O-methylation of 2,6-dibromophenol was studied in cell extracts prepared from Rhodococcus sp. strain 1395. O-methylation activity was enhanced by the addition of S-adenosyl-l-methionine but was not affected by the addition of 5-methyltetrahydrofolate nor by up to 10 mM MgCl2 or EDTA. By using 2,6-dibromophenol, 4,5,6-trichloroguaiacol, and pentachlorothiophenol as the substrates, O-methylation activity was also demonstrated in extracts from two other Rhodococcus sp. strains, an Acinetobacter sp. strain, and a Pseudomonas sp. strain. A diverse range of chloro- and bromophenols, chlorothiophenols, chloro- and bromoguaiacols, and chloro- and bromocatechols were assayed as the substrates by using extracts prepared from strain 1395; all of the compounds were methylated to the corresponding anisoles, veratroles, or guaiacols, which have been identified previously from experiments using whole cells. The specific activity of the enzyme towards the thiophenols was significantly higher than it was towards all the other substrates—high activity was found with pentafluorothiophenol, although the activity with pentafluorophenol was undetectable with the incubation times used. For the chlorophenols, the position of the substituents was of cardinal importance. The enzyme had higher activity towards the halogenated catechols than towards the corresponding guaiacols, and selective O-methylation of the 3,4,5-trihalogenocatechols yielded predominantly the 3,4,5-trihalogenoguaiacols. As in experiments with whole cells, neither 2,4-dinitrophenol, hexachlorophene, nor 5-chloro- or 5-bromovanillin was O-methylated. The results showed conclusively that the methylation reactions were enzymatic and confirmed the conclusion from extensive studies using whole cells that methylation of halogenated phenols may be a significant alternative to biodegradation.
机译:在由红球菌属sp。制备的细胞提取物中研究了2,6-二溴苯酚的O-甲基化。通过加入S-腺苷-1-甲硫氨酸增强了O-甲基化活性,但不受加入5-甲基四氢叶酸或至多10 mM MgCl 2或EDTA的影响。通过使用2,6-二溴苯酚,4,5,6-三氯愈创木酚和五氯硫酚作为底物,还从另外两个红球菌sp。的提取物中证明了O-甲基化活性。菌株,不动杆菌属。株和假单胞菌。应变。使用从菌株1395制备的提取物,测定了各种氯酚和溴酚,氯硫酚,氯和溴愈创木酚以及氯和溴邻苯二酚作为底物。所有化合物均被甲基化为相应的茴香醚,藜芦醇或愈创木酚,这些化合物先前已通过使用全细胞的实验进行了鉴定。该酶对苯硫酚的比活性显着高于其对所有其他底物的比活性-五氟硫酚的活性很高,尽管在使用的孵育时间中五氟苯酚的活性无法检测到。对于氯酚,取代基的位置至关重要。该酶对卤代邻苯二酚的活性高于对相应的愈创木酚的活性,并且3,4,5-三卤代邻苯二酚的选择性O-甲基化主要产生3,4,5-三卤代愈创木酚。如在全细胞实验中一样,2,4-二硝基苯酚,六氯苯酚,5-氯-或5-溴香兰素均未进行O-甲基化。结果最终表明甲基化反应是酶促的,并证实了使用全细胞进行的大量研究得出的结论:卤代酚的甲基化可能是生物降解的重要替代方法。

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