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