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首页> 外文期刊>Mycotoxin Research >Interactions of zearalanone, alpha-zearalanol, beta-zearalanol, zearalenone-14-sulfate, and zearalenone-14-glucoside with serum albumin
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Interactions of zearalanone, alpha-zearalanol, beta-zearalanol, zearalenone-14-sulfate, and zearalenone-14-glucoside with serum albumin

机译:Zearalanone,α-Zealalanol,β-氧化醇,Zearalenone-14-硫酸盐和Zearalenone-14-葡萄糖苷与血清白蛋白相互作用

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摘要

The xenoestrogenic mycotoxin zearalenone is aFusarium-derived food and feed contaminant. In mammals, the reduced (e.g., zearalanone, alpha-zearalanol, and beta-zearalanol) and conjugated (e.g., zearalenone-14-sulfate) metabolites of zearalenone are formed. Furthermore, filamentous fungi and plants are also able to convert zearalenone to conjugated derivatives, including zearalenone-14-sulfate and zearalenone-14-glucoside, respectively. Serum albumin is the dominant plasma protein in the circulation; it interacts with certain mycotoxins, affecting their toxicokinetics. In a previous investigation, we demonstrated the remarkable species differences regarding the albumin binding of zearalenone and zearalenols. In the current study, the interactions of zearalanone, alpha-zearalanol, beta-zearalanol, zearalenone-14-sulfate, and zearalenone-14-glucoside with human, bovine, porcine, and rat serum albumins were examined, employing fluorescence spectroscopy and affinity chromatography. Zearalanone, zearalanols, and zearalenone-14-sulfate form stable complexes with albumins tested (K= 9.3 x 10(3)to 8.5 x 10(5)L/mol), while the albumin binding of zearalenone-14-glucoside seems to be weak. Zearalenone-14-sulfate formed the most stable complexes with albumins examined. Considerable species differences were observed in the albumin binding of zearalenone metabolites, which may have a role in the interspecies differences regarding the toxicity of zearalenone.
机译:卵雌霉素霉菌毒素Zearalenone是衍生的食物和饲料污染物。在哺乳动物中,形成减少的(例如,Zearalanone,α-Zealalanol和β-Zealalanol)和缀合(例如,酸甲酮-14-硫酸盐)代谢物的酸甲酮。此外,丝状真菌和植物还能够将串甲酮转化为共轭衍生物,分别包括串甲酮-14-硫酸盐和酸甲酮-14-葡糖苷。血清白蛋白是循环中的显性血浆蛋白;它与某些霉菌毒素相互作用,影响他们的诱导性。在先前的调查中,我们证明了关于Zearalenone和Zearalenols的白蛋白结合的显着物种差异。在目前的研究中,研究了Zearalanone,α-羟烷醇,β-羟烷醇,Zearalenone-14-硫酸盐和Zearalenone-14-葡糖苷与人,牛,猪和大鼠血清酶的相互作用,采用荧光光谱和亲和层析。 Zearalanone,Zealalanols和Zearalenone-14-硫酸盐与测试的白蛋白(k = 9.3×10(3)〜8.5×10(5)升/ mol)形成稳定的配合物,而Zearalenone-14-葡糖苷的白蛋白结合似乎是虚弱的。 Zearalenone-14-硫酸盐形成了蛋白质检查的最稳定的复合物。在Zearalenone代谢物的白蛋白结合中观察到相当大的物种差异,这可能在酸铝酮毒性的差异中具有作用。

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