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首页> 外文期刊>Chemical research in toxicology >Mechanism for inhibition of thyroid peroxidase by leucomalachite green.
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Mechanism for inhibition of thyroid peroxidase by leucomalachite green.

机译:白孔雀绿抑制甲状腺过氧化物酶的机制。

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摘要

The triphenylmethane dye, malachite green (MG), is used to treat and prevent fungal and parasitic infections in the aquaculture industry. It has been reported that the reduced metabolite of MG, leucomalachite green (LMG), accumulates in the tissues of fish treated with MG. MG is structurally related to other triphenylmethane dyes (e.g., gentian violet and pararosaniline) that are carcinogenic in the liver, thyroid, and other organs of experimental animals. The ability of LMG to inhibit thyroid peroxidase (TPO), the enzyme that catalyzes the iodination and coupling reactions required for thyroid hormone synthesis, was determined in this study. LMG inhibited TPO-catalyzed tyrosine iodination (half-maximal inhibition at ca. 10 microM). LMG also inhibited the TPO-catalyzed formation of thyroxine in low-iodine human goiter thyroglobulin (half-maximal inhibition at ca. 10 microM) using a model system that measures simultaneous iodination and coupling. Direct inhibition of the coupling reaction by LMG was shown using a coupling-only system containing chemically preiodinated thyroglobulin as the substrate. Incubation of LMG with TPO, iodide, and tyrosine in the presence of a H2O2-generating system yielded oxidation products that were identified by using on-line LC/APCI-MS as desmethyl LMG, 2desmethyl LMG, 3desmethyl LMG, MG, and MG N-oxide. Similar products from LMG were observed in incubations with TPO and H2O2 alone. These findings suggest that the anti-thyroid effects (increased serum thyroid-stimulating hormone and decreased serum thyroxine) observed in rats treated with LMG result from blockade of hormone synthesis through alternate substrate inhibition and that chronic exposure could cause thyroid follicular cell tumors through a hormonal mechanism. The observed TPO-catalyzed oxidative demethylation of LMG to a primary arylamine also suggests a genotoxic mechanism for tumor formation is possible.
机译:三苯基甲烷染料,孔雀石绿(MG),用于治疗和预防水产养殖业中的真菌和寄生虫感染。据报道,MG的还原代谢产物白孔雀石绿(LMG)累积在用MG处理的鱼的组织中。 MG在结构上与其他三苯基甲烷染料(例如,龙胆紫和副玫瑰苯胺)有关,这些染料在实验动物的肝脏,甲状腺和其他器官中具有致癌性。在这项研究中确定了LMG抑制甲状腺过氧化物酶(TPO)的能力,该酶催化甲状腺激素合成所需的碘化和偶联反应。 LMG抑制TPO催化的酪氨酸碘化(在10μM时最大抑制一半)。使用测量同时碘化和偶合的模型系统,LMG还可以抑制低碘人甲状腺肿甲状腺球蛋白中TPO催化的甲状腺素形成(半最大抑制量约为10 microM)。使用仅偶联的系统显示了LMG对偶联反应的直接抑制,该系统仅包含化学上先碘化的甲状腺球蛋白作为底物。在生成H2O2的系统中,将LMG与TPO,碘化物和酪氨酸一起孵育,产生的氧化产物可通过在线LC / APCI-MS鉴定为脱甲基LMG,2desmethyl LMG,3desmethyl LMG,MG和MG N -氧化物。在单独与TPO和H2O2孵育时观察到了LMG的类似产品。这些发现表明,在LMG治疗的大鼠中观察到的抗甲状腺作用(血清促甲状腺激素增加和血清甲状腺素降低)是由于激素的合成通过交替的底物抑制而被阻断,并且长期暴露可能通过激素引起甲状腺滤泡细胞瘤。机制。观察到的TPO催化LMG氧化脱甲基为伯芳基胺也表明可能形成肿瘤的遗传毒性机制。

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