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氯取代对各种多氯联苯细菌代谢的影响。

Effect of chlorine substitution on the bacterial metabolism of various polychlorinated biphenyls.

作者信息

Furukawa K, Tomizuka N, Kamibayashi A

出版信息

Appl Environ Microbiol. 1979 Aug;38(2):301-10. doi: 10.1128/aem.38.2.301-310.1979.

Abstract

Of 36 pure isomers (chlorine numbers 1 to 5) of polychlorinated biphenyls examined, 23 compounds were metabolized by Alcaligenes sp. strain Y42, and 33 compounds were metabolized by Acinetobacter sp. strain P6. The major pathway of many polychlorinated biphenyl isomers examined was considered to proceed through 2',3'-dihydro-2',3'-diol compounds, concomitant dehydrogenated 2',3'-dihydroxy compounds, subsequently the 1',2'-meta-cleavage compounds (chlorinated derivatives of 2-hydroxy-6-oxo-6-phenylhexa-2,4-dienoic acids), and then chlorobenzoic acids. The meta-cleavage products were usually converted to chlorobenzoic acids upon further incubation in many polychlorinated biphenyls, but they accumulated specifically in the metabolism of 2,4'-, 2,4,4'-, and 2,5,4'-chlorobiphenyls, which are all chlorinated at the 2,4'-position in the molecules in common. Dihydroxy compounds accumulated mainly in the metabolism of 2,6-, 2,3,6-, 2,4,2',5'-, 2,5,2',5'-, and 2,4,5,2',5'-chlorobiphenyls by Acinetobacter sp. P6. The 2,3,2',3'-, 2,3,2',5'-, and 2,4,5,2',3'-chlorobiphenyls, which are chlorinated at the 2,3-position of one of the rings, were metabolized in a different fashion. Two major metabolites of a chlorobenzoic acid and an unknown compound accumulated always in the metabolism of this group of polychlorinated biphenyls. 2,4,6-Trichlorobiphenyl was metabolized quite differently between the two organisms. Alcaligenes sp. Y42 metabolized this compound very slowly to trichlorobenzoic acid by the major oxidative route. In contrast, Acinetobacter sp. P6 metabolized it to a trihydroxy compound via a dihydroxy compound.

摘要

在所检测的36种多氯联苯纯异构体(氯原子数为1至5)中,23种化合物可被产碱杆菌属菌株Y42代谢,33种化合物可被不动杆菌属菌株P6代谢。许多所检测的多氯联苯异构体的主要代谢途径被认为是先经过2',3'-二氢-2',3'-二醇化合物,接着是脱氢的2',3'-二羟基化合物,随后是1',2'-间位裂解化合物(2-羟基-6-氧代-6-苯基己-2,4-二烯酸的氯化衍生物),然后是氯苯甲酸。在许多多氯联苯中,间位裂解产物在进一步培养时通常会转化为氯苯甲酸,但它们在2,4'-、2,4,4'-和2,5,4'-氯联苯的代谢过程中会特异性积累,这三种化合物在分子的2,4'-位均有氯取代。二羟基化合物主要在不动杆菌属菌株P6对2,6-、2,3,6-、2,4,2',5'-、2,5,2',5'-和2,4,5,2',5'-氯联苯的代谢过程中积累。在其中一个环的2,3-位有氯取代的2,3,2',3'-、2,3,2',5'-和2,4,5,2',3'-氯联苯的代谢方式不同。在这组多氯联苯的代谢过程中,总是会积累一种氯苯甲酸和一种未知化合物这两种主要代谢产物。2,4,6-三氯联苯在这两种微生物中的代谢方式差异很大。产碱杆菌属菌株Y42通过主要氧化途径将该化合物非常缓慢地代谢为三氯苯甲酸。相比之下,不动杆菌属菌株P6则通过一种二羟基化合物将其代谢为一种三羟基化合物。

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