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4-Sulphobenzoate 3,4-dioxygenase. Purification and properties of a desulphonative two-component enzyme system from Comamonas testosteroni T-2.

机译:4-硫酸苯甲酸酯3,4-二加氧酶。一种来自Comamonas testosteroni T-2的脱硫两组分酶系统的纯化和性质。

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摘要

Cell-free extracts of Comamonas testosteroni T-2 grown in toluene-p-sulphonate/salts medium catalyse the conversion of p-sulphobenzoate (PSB) into protocatechuate and sulphite by an NADH-requiring and Fe2(+)-activated dioxygenase. Anion-exchange chromatography of extracts yielded red (A) and yellow (B) protein fractions, both of which were necessary for dioxygenative activity. Further purification of each fraction by hydrophobic interaction chromatography and gel filtration led to two homogeneous protein components (A and B), which together converted 1 mol each of PSB, O2 and NADH into 1 mol each of protocatechuate, sulphite and, presumably, NAD+. The system was named 4-sulphobenzoate 3,4-dioxygenase (PSB dioxygenase system). Monomeric component B (Mr 36,000) was determined to be a reductase that contained 1 mol of FMN and about 2 mol each of iron and inorganic sulphur per mol. This component transferred electrons from NADH to the oxygenase component (A) or to, e.g., cytochrome c. Homodimeric component A (subunit Mr 50,000) of the PSB dioxygenase system contained one [2Fe-2S] centre per subunit and its u.v.-visible-absorption spectrum corresponded to a Rieske-type iron-sulphur centre. The requirement for activation by iron was interpreted as partial loss of mononuclear iron during purification of component A. Component A could be reduced by dithionite or by NADH plus catalytic amounts of component B. The PSB dioxygenase system displayed a narrow substrate range: none of 18 sulphonated or non-sulphonated analogues of PSB showed significant substrate-dependent O2 uptake. The physical properties of the PSB dioxygenase system resemble those of other bacterial multi-component dioxygenase, especially phthalate dioxygenase. However, it differs from most characterized systems in its overall reaction; the product is a vicinal diphenol, and not a dihydrodiol.
机译:在甲苯-对-磺酸盐/盐介质中生长的无性睾丸激素T-2的无细胞提取物通过需要NADH和Fe2(+)活化的双加氧酶催化对苯磺酸苯酯(PSB)转化为原儿茶酸盐和亚硫酸盐。提取物的阴离子交换色谱法产生红色(A)和黄色(B)蛋白质级分,这两个都是双氧合活性所必需的。通过疏水相互作用色谱和凝胶过滤进一步纯化各馏分,得到两种均质的蛋白质组分(A和B),它们将1摩尔的PSB,O2和NADH一起转化为1摩尔的原儿茶酸,亚硫酸盐和NAD +。该系统命名为4-磺基苯甲酸酯3,4-双加氧酶(PSB双加氧酶系统)。单体组分B(Mr 36,000)经测定为一种还原酶,其中每摩尔含1摩尔的FMN和约2摩尔的铁和无机硫。该组分将电子从NADH转移到加氧酶组分(A)或转移到例如细胞色素c。 PSB双加氧酶系统的同二聚体组分A(50,000先生亚基)每个亚基包含一个[2Fe-2S]中心,其u-v。可见吸收光谱对应于Rieske型铁硫中心。铁活化的要求被解释为在纯化组分A时单核铁的部分损失。连二亚硫酸盐或NADH加催化量的组分B可以减少组分A。PSB双加氧酶系统显示出较窄的底物范围:18个都没有磺化或未磺化的PSB类似物表现出显着的底物依赖性O2吸收。 PSB双加氧酶系统的物理性质类似于其他细菌多组分双加氧酶,尤其是邻苯二甲酸双加氧酶。但是,它的总体反应与大多数特征系统不同。该产品是邻位的二酚,而不是二氢二醇。

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