Brückmann M, Blasco R, Timmis K N, Pieper D H
Department of Microbiology, National Research Centre for Biotechnology, Braunschweig, Germany.
J Bacteriol. 1998 Jan;180(2):400-2. doi: 10.1128/JB.180.2.400-402.1998.
Protoanemonin is a toxic metabolite which may be formed during the degradation of some chloroaromatic compounds, such as polychlorinated biphenyls, by natural microbial consortia. We show here that protoanemonin can be transformed by dienelactone hydrolase of Pseudomonas sp. strain B13 to cis-acetylacrylate. Although similar Km values were observed for cis-dienelactone and protoanemonin, the turnover rate of protoanemonin was only 1% that of cis-dienelactone. This indicates that at least this percentage of the enzyme is in the active state, even in the absence of activation. The trans-dienelactone hydrolase of Pseudomonas sp. strain RW10 did not detectably transform protoanemonin. Obviously, Pseudomonas sp. strain B13 possesses at least two mechanisms to avoid protoanemonin toxicity, namely a highly active chloromuconate cycloisomerase, which routes most of the 3-chloro-cis,cis-muconate to the cis-dienelactone, thereby largely preventing protoanemonin formation, and dienelactone hydrolase, which detoxifies any small amount of protoanemonin that might nevertheless be formed.
原白头翁素是一种有毒代谢产物,在一些氯代芳香族化合物(如多氯联苯)被天然微生物群落降解的过程中可能会形成。我们在此表明,原白头翁素可被假单胞菌属B13菌株的二烯内酯水解酶转化为顺式乙酰丙烯酸酯。虽然顺式二烯内酯和原白头翁素的Km值相似,但原白头翁素的周转速率仅为顺式二烯内酯的1%。这表明即使在没有激活的情况下,至少这一比例的酶处于活性状态。假单胞菌属RW10菌株的反式二烯内酯水解酶未检测到对原白头翁素的转化。显然,假单胞菌属B13菌株拥有至少两种避免原白头翁素毒性的机制,即一种高活性的氯代粘康酸环异构酶,它将大部分3-氯-顺,顺-粘康酸导向顺式二烯内酯,从而在很大程度上防止原白头翁素的形成,以及二烯内酯水解酶,它能将可能形成的任何少量原白头翁素解毒。