Pollmann K, Beil S, Pieper D H
Division of Microbiology, German Research Center for Biotechnology (GBF), D-38124 Braunschweig, Germany.
Appl Environ Microbiol. 2001 Sep;67(9):4057-63. doi: 10.1128/AEM.67.9.4057-4063.2001.
The tecB gene, located downstream of tecA and encoding tetrachlorobenzene dioxygenase, in Ralstonia sp. strain PS12 was cloned into Escherichia coli DH5alpha together with the tecA gene. The identity of the tecB gene product as a chlorobenzene dihydrodiol dehydrogenase was verified by transformation into the respective catechols of chlorobenzene, the three isomeric dichlorobenzenes, as well as 1,2,3- and 1,2,4-trichlorobenzenes, all of which are transformed by TecA into the respective dihydrodihydroxy derivatives. Di- and trichlorotoluenes were either subject to TecA-mediated dioxygenation (the major or sole reaction observed for the 1,2,4-substituted 2,4-, 2,5-, and 3,4-dichlorotoluenes), resulting in the formation of the dihydrodihydroxy derivatives, or to monooxygenation of the methyl substituent (the major or sole reaction observed for 2,3-, 2,6-, and 3,5-dichloro- and 2,4,5-trichlorotoluenes), resulting in formation of the respective benzyl alcohols. All of the chlorotoluenes subject to dioxygenation by TecA were transformed, without intermediate accumulation of dihydrodihydroxy derivatives, into the respective catechols by TecAB, indicating that dehydrogenation is no bottleneck for chlorobenzene or chlorotoluene degradation. However, only those chlorotoluenes subject to a predominant dioxygenation were growth substrates for PS12, confirming that monooxygenation is an unproductive pathway in PS12.
将嗜麦芽窄食单胞菌PS12菌株中位于tecA下游且编码四氯苯双加氧酶的tecB基因与tecA基因一起克隆到大肠杆菌DH5α中。通过将氯苯、三种异构二氯苯以及1,2,3 - 和1,2,4 - 三氯苯各自转化为相应的儿茶酚,验证了tecB基因产物作为氯苯二氢二醇脱氢酶的身份,所有这些物质均由TecA转化为各自的二氢二羟基衍生物。二氯甲苯和三氯甲苯要么发生TecA介导的双加氧反应(对于1,2,4 - 取代的2,4 - 、2,5 - 和3,4 - 二氯甲苯观察到的主要或唯一反应),形成二氢二羟基衍生物,要么发生甲基取代基的单加氧反应(对于2,3 - 、2,6 - 和3,5 - 二氯甲苯以及2,4,5 - 三氯甲苯观察到的主要或唯一反应),形成各自的苄醇。所有经TecA双加氧的氯甲苯都被TecAB转化为相应的儿茶酚,且无二氢二羟基衍生物的中间积累,这表明脱氢不是氯苯或氯甲苯降解的瓶颈。然而,只有那些主要发生双加氧反应的氯甲苯是PS12的生长底物,这证实了单加氧反应在PS12中是一条无生产性的途径。