首页> 外文期刊>Journal of molecular microbiology and biotechnology: JMMB >Protocatechuate 3,4-Dioxygenase: A Wide Substrate Specificity Enzyme Isolated from Stenotrophomonas maltophilia KB2 as a Useful Tool in Aromatic Acid Biodegradation
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Protocatechuate 3,4-Dioxygenase: A Wide Substrate Specificity Enzyme Isolated from Stenotrophomonas maltophilia KB2 as a Useful Tool in Aromatic Acid Biodegradation

机译:原儿茶酸3,4-双加氧酶:分离自嗜麦芽窄食单胞菌KB2的一种广泛的底物特异性酶,作为芳香酸生物降解中的有用工具

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摘要

Protocatechuate 3,4-dioxygenases (P34Os) catalyze the reaction of the ring cleavage of aromatic acid derivatives. It is a key reaction in many xenobiotic metabolic pathways. P34Os characterize narrow substrate specificity. This property is an unfavorable feature in the biodegradation process because one type of pollution is rarely present in the environment. Thus, the following study aimed at the characterization of a P34O from Stenotrophomonas maltophilia KB2, being able to utilize a wide spectrum of aromatic carboxylic acids. A total of 3 m M vanillic acid and 4-hydroxybenzoate were completely degraded during 8 and 4.5 h, respectively. When cells of strain KB2 were grown on 9 m M 4-hydroxybenzoate, P34O was induced. Biochemical analysis revealed that the examined enzyme was similar to other known P34Os, but showed untypical wide substrate specificity. A high activity of P34O against 2,4- and 3,5-dihydroxybenzoate was observed. As these substrates do not possess ortho configuration hydroxyl groups, it is postulated that their cleavage could be connected with their monodentate binding of substrate to the active site. Since this enzyme characterizes untypical wide substrate specificity it makes it a useful tool in applications for environmental clean-up purposes.
机译:原儿茶酸3,4-二加氧酶(P34Os)催化芳香族酸衍生物的环裂解反应。它是许多异源代谢途径中的关键反应。 P34Os具有较窄的底物特异性。该性质在生物降解过程中是不利的特征,因为环境中几乎不存在一种污染。因此,以下研究旨在表征嗜麦芽窄食单胞菌KB2中的P34O,能够利用多种芳香族羧酸。总共3 m M的香草酸和4-羟基苯甲酸酯分别在8小时和4.5小时内完全降解。当菌株KB2的细胞在9 m M 4-羟基苯甲酸酯上生长时,诱导了P34O。生化分析表明,所检查的酶与其他已知的P34O相似,但显示出非典型的宽底物特异性。观察到P34O对2,4-和3,5-二羟基苯甲酸酯具有高活性。由于这些底物不具有邻位构型的羟基,因此假定它们的裂解可以与底物与活性位点的单齿结合有关。由于这种酶具有非典型的广泛底物特异性,因此使其成为用于环境清洁目的的有用工具。

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