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Phenol hydroxylase cloned from Ralstonia eutropha strain E2 exhibits novel kinetic properties

机译:来自Ralstonia Eutropha菌株E2克隆的苯酚羟化酶表现出新的动力学性质

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Ralstonia eutropha strain E2 (previously Alcaligenes sp.) is a phenol-degrading bacterium expressing phenol-oxygenating activity with a low Ks (the apparent half-saturation constant in Haldane's equation) and an extremely high KSI (the apparent inhibition constant). To identify the molecular basis for these novel cellular kinetic properties, a 9.5 kb DNA fragment that allowed Pseudomonas aeruginosa PAO1c (Phl- Cat+) to grow on phenol as the sole carbon source was cloned from strain E2 into plasmid pRO1614. PAO1c harbouring this plasmid (designated pROE217) transformed phenol to catechol, indicating that this fragment contains gene(s) for phenol hydroxylase. The cloned genes consist of eight complete ORFs, designated poxRABCDEFG. The products are homologous to those of dmpRKLMNOPQ of Pseudomonas sp. CF600, sharing 30--65% identity: this suggests that the phenol hydroxylase is a multicomponent enzyme. The kinetic constants for phenol-oxygenating activity of PA01c(pROE217) were determined, and these were compared with those of strain E2. The kinetic constants of PAO1c derivatives expressing different phenol hydroxylases were also determined. A comparison of these kinetic data suggests that phenol hydroxylase, the first enzyme in the phenol-degradative pathway, determines Ks and KSI values for the cellular phenol-oxygenating activity. It is thus suggested that the phenol hydroxylase cloned from strain E2 exhibits the novel kinetic properties that were observed with intact cells of strain E2.
机译:Ralstonia Eutropha菌株E2(以前的Alcaligenes Sp。)是表达具有低Ks(卤代酸的表观半饱和常数)的酚类降解的细菌和极高的KSI(表观抑制常数)。为了鉴定这些新细胞动力学性质的分子基础,将允许Pseudomonas铜绿假单胞菌的9.5kb DNA片段从菌株E2克隆到质粒pro1614中。 Pao1c含有这种质粒(指定的PRE217)转化为儿茶酚的苯酚,表明该片段含有苯酚羟化酶的基因。克隆基因包括八个完整的ORF,指定POXRABCDEFG。该产品与Pseudomonas SP的DMPRKLMNOPQ的产品同源。 CF600,共享30-65 %同一性:这表明苯酚羟化酶是多组分酶。测定PA01C(PRE217)的酚醛氧化活性的动力学常数,与菌株E2的苯酚 - 氧化活性。还测定了表达不同酚羟基酶的PAO1C衍生物的动力学常数。这些动力学数据的比较表明酚羟化酶,酚类降解途径中的第一酶,确定细胞酚氧合活性的Ks和KSI值。因此,从菌株E2克隆的苯酚羟化酶表现出用菌株E2的完整细胞观察到的新型动力学性质。

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