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首页> 外文期刊>Mycotoxin Research >Interactions of zearalenone and its reduced metabolites alpha-zearalenol and beta-zearalenol with serum albumins: species differences, binding sites, and thermodynamics
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Interactions of zearalenone and its reduced metabolites alpha-zearalenol and beta-zearalenol with serum albumins: species differences, binding sites, and thermodynamics

机译:Zearalenone及其降低代谢物的相互作用与血清蛋白质:物种差异,结合位点和热力学

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Zearalenone (ZEN) is a mycotoxin produced by Fusarium species. ZEN mainly appears in cereals and related foodstuffs, causing reproductive disorders in animals, due to its xenoestrogenic effects. The main reduced metabolites of ZEN are alpha-zearalenol (alpha-ZEL) and beta-zearalenol (beta-ZEL). Similarly to ZEN, ZELs can also activate estrogen receptors; moreover, alpha-ZEL is the most potent endocrine disruptor among these three compounds. Serum albumin is the most abundant plasma protein in the circulation; it affects the tissue distribution and elimination of several drugs and xenobiotics. Although ZEN binds to albumin with high affinity, albumin-binding of alpha-ZEL and beta-ZEL has not been investigated. In this study, the complex formation of ZEN, alpha-ZEL, and beta-ZEL with human (HSA), bovine (BSA), porcine (PSA), and rat serum albumins (RSA) was investigated by fluorescence spectroscopy, affinity chromatography, thermodynamic studies, and molecular modeling. Our main observations are as follows: (1) ZEN binds with higher affinity to albumins than alpha-ZEL and beta-ZEL. (2) The low binding affinity of beta-ZEL toward albumin may result from its different binding position or binding site. (3) The binding constants of the mycotoxin-albumin complexes significantly vary with the species. (4) From the thermodynamic point of view, the formation of ZEN-HSA and ZEN-RSA complexes are similar, while the formation of ZEN-BSA and ZEN-PSA complexes are markedly different. These results suggest that the toxicological relevance of ZEN-albumin and ZEL-albumin interactions may also be species-dependent.
机译:Zearalenone(ZEN)是由镰刀菌种植的霉菌毒素。禅宗主要出现在谷物和相关食品中,由于其卵雌激素效应导致动物的生殖障碍。 Zen的主要降低代谢物是α-Zearalenol(α-zel)和β-zearalenol(β-zel)。与禅宗类似,Zel也可以激活雌激素受体;此外,α-zel是这三种化合物中最有效的内分泌破坏剂。血清白蛋白是循环中最丰富的血浆蛋白质;它影响组织分布和消除几种药物和异种症。虽然ZEN与具有高亲和力的白蛋白结合,但尚未研究α-zel和β-zel的白蛋白结合。在本研究中,通过荧光光谱,亲和层析,热力学研究和分子建模。我们的主要观察如下:(1)ZEN与alpha-zel和β-zel具有更高的亲和力。 (2)β-沸点对白蛋白的低结合亲和力可以由其不同的结合位置或结合位点产生。 (3)霉菌毒素 - 白蛋白复合物的结合常数与物种明显不同。 (4)从热力学的角度来看,ZEN-HSA和ZEN-RSA络合物的形成是相似的,而ZEN-BSA和ZEN-PSA配合物的形成显着不同。这些结果表明,禅 - 白蛋白和Zel-白蛋白相互作用的毒理学相关性也可能是依赖性的。

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