González B, Acevedo C, Brezny R, Joyce T
Laboratorio de Microbiología, Facultad de Ciencias Biológicas, Pontificia Universidad Católica de Chile, Santiago.
Appl Environ Microbiol. 1993 Oct;59(10):3424-9. doi: 10.1128/aem.59.10.3424-3429.1993.
The metabolism of chlorinated guaiacols by a pure bacterial strain identified by its ability to use guaiacol as the sole carbon and energy source was studied. This strain, identified as Acinetobacter junii 5ga, was unable to grow on several chlorinated guaiacols and catechols. However, strain 5ga grown on guaiacol degraded 4- and 5-chloroguaiacol and 4,5-dichloroguaiacol. Under the same conditions, these cells did not degrade 6-chloroguaiacol, 4,6-dichloroguaiacol, 4,5,6-trichloroguaiacol, or tetrachloroguaiacol, suggesting that the substitution at the 6 position in the ring prevents metabolism of the compound. Degradation of 4-chloroguaiacol was dependent on the initial ratio between the chlorinated compound and viable cells. Transient formation of chlorocatechols resulting from incubation of cells with 4-chloroguaiacol or 4,5-dichloroguaiacol was suggested by UV spectroscopy. Gas chromatography analyses of samples from cultures of strain 5ga grown on guaiacol and incubated with 4- and 4,5-dichloroguaiacol confirmed the presence of 4-chlorocatechol and 4,5-dichlorocatechol, respectively. The formation of the latter was corroborated by gas chromatography-mass spectrometry. Thus, this strain is able to initiate metabolism of specific chlorinated guaiacols by O-demethylation. The starting chlorinated guaiacols and their O-demethylated metabolites inhibited the growth of A. junii 5ga on guaiacol.
研究了一种以愈创木酚作为唯一碳源和能源进行鉴定的纯细菌菌株对氯化愈创木酚的代谢情况。该菌株被鉴定为琼氏不动杆菌5ga,无法在几种氯化愈创木酚和儿茶酚上生长。然而,在愈创木酚上生长的5ga菌株可降解4-氯愈创木酚、5-氯愈创木酚和4,5-二氯愈创木酚。在相同条件下,这些细胞不会降解6-氯愈创木酚、4,6-二氯愈创木酚、4,5,6-三氯愈创木酚或四氯愈创木酚,这表明环上6位的取代阻止了该化合物的代谢。4-氯愈创木酚的降解取决于氯化化合物与活细胞之间的初始比例。紫外光谱表明,细胞与4-氯愈创木酚或4,5-二氯愈创木酚孵育会导致氯代儿茶酚的瞬时形成。对在愈创木酚上生长并与4-氯愈创木酚和4,5-二氯愈创木酚孵育的5ga菌株培养物样品进行气相色谱分析,分别证实了存在4-氯儿茶酚和4,5-二氯儿茶酚。气相色谱-质谱联用进一步证实了后者的形成。因此,该菌株能够通过O-去甲基化启动特定氯化愈创木酚的代谢。起始的氯化愈创木酚及其O-去甲基化代谢产物抑制了琼氏不动杆菌5ga在愈创木酚上的生长。