Francova K, Macková M, Macek T, Sylvestre M
Department of Biochemistry and Microbiology, Faculty of Food and Biochemical Technology, ICT Prague, Technicka 3, 6, 166 28, Prague, Czech Republic.
Environ Pollut. 2004;127(1):41-8. doi: 10.1016/s0269-7491(03)00257-4.
Capacity of enzymes of the biphenyl/chlorobiphenyl pathway, especially biphenyl dioxygenase (BPDO) of two polychlorinated biphenyls (PCB) degrading bacteria, Burkholderia sp. LB400 and Comamonas testosteroni B-356, to metabolize ortho-substituted hydroxybiphenyls was tested.,These compounds found among plant products of PCB metabolism, are carrying chlorine atoms on the hydroxyl-substituted ring. The abilities of His-tagged purified LB400 and B-356 BPDOs to catalyze the oxygenation of 2-hydroxy-3-chlorobiphenyl, 2-hydroxy-5-chlorobiphenyl and 2-hydroxy-3,5-dichlorobiphenyl were compared. Both enzyme preparations catalyzed the hydroxylation of the three chloro-hydroxybiphenyls on the non-substituted ring. Neither LB400 BPDO nor B-356 BPDO oxygenated the substituted ring of the ortho-hydroxylated biphenyl. The fact that metabolites generated by both enzymes were identical for all three hydroxychlorobiphenyls tested; exclude any other mode of attack of these compounds by LB400 BPDOs than the ortho-meta oxygenation.
测试了联苯/氯代联苯途径的酶,特别是两种多氯联苯(PCB)降解细菌——伯克霍尔德氏菌LB400和睾丸酮丛毛单胞菌B-356的联苯双加氧酶(BPDO)代谢邻位取代羟基联苯的能力。这些在PCB代谢的植物产物中发现的化合物,在羟基取代的环上带有氯原子。比较了带有组氨酸标签的纯化LB400和B-356 BPDO催化2-羟基-3-氯联苯、2-羟基-5-氯联苯和2-羟基-3,5-二氯联苯氧化的能力。两种酶制剂都催化了三种氯代羟基联苯在未取代环上的羟基化反应。LB400 BPDO和B-356 BPDO都没有氧化邻位羟基化联苯的取代环。对于所有三种测试的羟基氯代联苯,两种酶产生的代谢产物都相同,这排除了LB400 BPDO对这些化合物的攻击方式不是邻位-间位氧化的任何其他模式。