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基于细胞的技术评价 2-氯苯甲酸和 4-氯苯甲酸对 3-氯苯甲酸 1,2-双加氧酶的抑制作用。

Evaluation of 3-Chlorobenzoate 1,2-Dioxygenase Inhibition by 2- and 4-Chlorobenzoate with a Cell-Based Technique.

机构信息

Federal Research Center "Pushchino Biological Research Center of the Russian Academy of Sciences", G.K. Skryabin Institute of Biochemistry and Physiology of Microorganisms of the Russian Academy of Sciences; 142290 Pushchino, Moscow Region, Russia.

出版信息

Biosensors (Basel). 2019 Sep 5;9(3):106. doi: 10.3390/bios9030106.

Abstract

The electrochemical reactor microbial sensor with the Clark oxygen electrode as the transducer was used for investigation of the competition between 3-chlorobenzoate (3-CBA) and its analogues, 2- and 4-chlorobenzoate (2-CBA and 4-CBA), for 3-chlorobenzoate-1,2-dioxygenase (3-CBDO) of 1CP cells. The change in respiration of freshly harvested 1CP cells in response to 3-CBA served as an indicator of 3-CBDO activity. The results obtained confirmed inducibility of 3-CBDO. Sigmoidal dependency of the rate of the enzymatic reaction on the concentration of 3-CBA was obtained and positive kinetic cooperativity by a substrate was shown for 3-CBDO. The Hill concentration constant, , and the constant of catalytic activity, , were determined. Inhibition of the rate of enzymatic reaction by excess substrate, 3-CBA, was observed. Associative (competitive inhibition according to classic classification) and transient types of the 3-CBA-1,2-DO inhibition by 2-CBA and 4-CBA, respectively, were found. The kinetic parameters such as and were also estimated for 2-CBA and 4-CBA. The disappearance of the S-shape of the curve of the versus dependence for 3-CBDO in the presence of 4-CBA was assumed to imply that 4-chlorobenzoate had no capability to be catalytically transformed by 3-chlorobenzoate-1,2-dioxygenase of 1CP cells.

摘要

采用以克拉克氧电极作为换能器的电化学反应器微生物传感器,研究了 3-氯苯甲酸(3-CBA)与其类似物 2-氯苯甲酸(2-CBA)和 4-氯苯甲酸(4-CBA)对 1CP 细胞的 3-氯苯甲酸 1,2-双加氧酶(3-CBDO)的竞争。 freshly harvested 1CP 细胞对 3-CBA 的呼吸变化作为 3-CBDO 活性的指标。所得结果证实了 3-CBDO 的诱导能力。获得了酶反应速率对 3-CBA 浓度的 S 形依赖性,并显示出 3-CBDO 对底物的正动力学协同作用。确定了 Hill 浓度常数 和催化活性常数 。观察到过量底物 3-CBA 对酶反应速率的抑制。发现了 2-CBA 和 4-CBA 对 3-CBA-1,2-DO 的抑制分别为缔合(根据经典分类为竞争性抑制)和瞬态类型。还估计了 2-CBA 和 4-CBA 的动力学参数,如 和 。在存在 4-CBA 的情况下,3-CBDO 的 与 关系曲线的 S 形消失,这表明 4-氯苯甲酸没有被 1CP 细胞的 3-氯苯甲酸 1,2-双加氧酶催化转化的能力。

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