Hein P, Powlowski J, Barriault D, Hurtubise Y, Ahmad D, Sylvestre M
INRS-Santé, Institut National de la recherche scientifique, Pointe-Claire, QC, Canada.
Can J Microbiol. 1998 Jan;44(1):42-9.
In addition to 2,3-dihydroxybiphenyl 1,2-dioxygenase (B1,2O), biphenyl-grown cells of Comamonas testosteroni B-356 were shown to produce a catechol 2,3-dioxygenase (C2,3O). B1,2O showed strong sequence homology with B1,2Os found in other biphenyl catabolic pathways, while partial sequence analysis of the C2,3O of B-356 suggested a relationship with xylEII-encoded C2,3O. The coexistence of two meta-cleavage dioxygenases in this strain prompted a comparison between the catalytic properties of the two enzymes. C2,3O has a much broader substrate specificity than native or His-tagged B1,2O: both enzymes were inhibited by chlorocatechols, but B1,2O was more sensitive than C2,3O. The results are discussed in terms of the physiological implications of interaction between metabolites from the lower biphenyl-chlorobiphenyl pathway and enzymes of the upper pathway.
除了2,3-二羟基联苯1,2-双加氧酶(B1,2O)外,以联苯为生长底物的睾丸酮丛毛单胞菌B-356细胞还被证明能产生儿茶酚2,3-双加氧酶(C2,3O)。B1,2O与其他联苯分解代谢途径中发现的B1,2O具有很强的序列同源性,而对B-356的C2,3O进行的部分序列分析表明,它与木糖EII编码的C2,3O存在关联。该菌株中两种间位裂解双加氧酶的共存促使人们对这两种酶的催化特性进行比较。C2,3O的底物特异性比天然的或带有组氨酸标签的B1,2O要广泛得多:两种酶都受到氯代儿茶酚的抑制,但B1,2O比C2,3O更敏感。本文从联苯-氯代联苯下游途径的代谢产物与上游途径的酶之间相互作用的生理意义方面对结果进行了讨论。