Di Gioia D, Fava F, Baldoni F, Marchetti L
Department of Applied Chemistry and Material Science, University of Bologna, Italy.
Res Microbiol. 1998 May;149(5):339-48. doi: 10.1016/s0923-2508(98)80439-7.
Pyrocatechase activity was studied in the Pseudomonas sp. CPE2 strain, which is capable of growing on 2-chlorobenzoic and 2,5-dichlorobenzoic acid, giving rise to catechol and 4-chlorocatechol, respectively, as intermediate metabolites. The CPE2 crude extract was found to metabolize both catechol and 4-chlorocatechol. Enzymatic as well as phenotypic studies performed both on this strain and on a mutant strain lacking the chlorocatechol-degrading genes were consistent with the presence of two catechol-cleaving enzymes, one active mainly against catechol (pyrocatechase I) and the other with broader substrate specificity (pyrocatechase II). The latter enzyme also appeared to be induced when CPE2 cells were grown on 2-chlorobenzoic acid, thus contributing to catechol metabolism, in addition to pyrocatechase I. Despite the presence of a large plasmid in CPE2 cells, the chlorocatechol-degrading genes, highly homologous to the clc operon, were located on the chromosome. The selection at relatively high frequency of mutant strains with altered growth capabilities and which lacked the chlorocatechol-degrading genes suggests a transposon-like character for these catabolic genes in the CPE2 strain.
在假单胞菌属CPE2菌株中研究了邻苯二酚酶活性,该菌株能够在2-氯苯甲酸和2,5-二氯苯甲酸上生长,分别产生邻苯二酚和4-氯邻苯二酚作为中间代谢产物。发现CPE2粗提物能代谢邻苯二酚和4-氯邻苯二酚。对该菌株和缺乏氯邻苯二酚降解基因的突变菌株进行的酶学和表型研究均表明存在两种邻苯二酚裂解酶,一种主要作用于邻苯二酚(邻苯二酚酶I),另一种具有更广泛的底物特异性(邻苯二酚酶II)。当CPE2细胞在2-氯苯甲酸上生长时,后一种酶似乎也被诱导产生,因此除了邻苯二酚酶I外,它也有助于邻苯二酚的代谢。尽管CPE2细胞中存在一个大质粒,但与clc操纵子高度同源的氯邻苯二酚降解基因位于染色体上。生长能力改变且缺乏氯邻苯二酚降解基因的突变菌株以相对较高的频率被筛选出来,这表明CPE2菌株中这些分解代谢基因具有转座子样特征。