LIGAND-BINDING AND CATALYTIC PROPERTIES OF RECOMBINANT HUMAN THROMBOXANE SYNTHASE

A. V. Svirid, M. Shapira, Pavel G. Shahoika, Y. Pakhadnia, A. Gilep, S. Usanov
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Abstract

To study the spectrum of modulators of the human thromboxane synthase activity, the interaction of recombinant protein with various low-molecular weight ligands was analyzed. It was shown that thromboxane synthase interacts with a number of fatty acids and their derivatives (potential substrates or concurrent inhibitors), being a target for nonselective inhibition by imidazole and triazole derivatives used in medical practice and agriculture. Thus, another mechanism of action of endocrine-disrupting chemicals (EDC) was established. For the first time, the reduction of heme iron of thromboxane synthase by cytochrome P450 reductase was shown. This interaction accompanied by a partial inhibitory effect on the enzyme suppresses the formation of reaction by-products 12-hydroxyheptadecatenoic acid (12-HHT) and malonic dialdehyde (MDA). It is likely that this mechanism can participate in the regulation of the enzyme activity in vivo.
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重组人血栓素合成酶的配体结合及催化性能
为了研究人血栓素合成酶活性调节剂的谱,分析了重组蛋白与各种低分子量配体的相互作用。研究表明,血栓素合成酶与许多脂肪酸及其衍生物(潜在底物或并发抑制剂)相互作用,成为医疗实践和农业中使用的咪唑和三唑衍生物非选择性抑制的靶标。由此,内分泌干扰物(EDC)的另一种作用机制得以确立。首次证实了细胞色素P450还原酶对血栓素合成酶血红素铁的还原作用。这种相互作用伴随着对酶的部分抑制作用,抑制了反应副产物12-羟基十七烯酸(12-HHT)和丙二醛(MDA)的形成。这一机制可能参与了体内酶活性的调控。
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