首页> 外文期刊>Pharmaceutical research >Interaction mechanism between indoxyl sulfate, a typical uremic toxin bound to site II, and ligands bound to site I of human serum albumin.
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Interaction mechanism between indoxyl sulfate, a typical uremic toxin bound to site II, and ligands bound to site I of human serum albumin.

机译:硫酸吲哚酚硫酸盐是人血清白蛋白结合至位点II的典型尿毒症毒素与结合位点I之间的相互作用机理。

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摘要

PURPOSE: The study was performed for clarifying the mechanism of interaction between indoxyl sulfate (IS), a typical uremic toxin bound to site II, and site I-ligands when bound to human serum albumin (HSA). The effect of the N to B transition on the interactions was also examined. METHODS: Quantitative investigation of the relations between ligands bound to HSA was performed by equilibrium dialysis, and the binding data were analyzed on the basis of a theoretical model for simultaneous binding of two ligands. RESULTS: The high-affinity binding constants for the site I-ligands warfarin (WF) and dansyl-L-asparagine (DNSA) increased with increasing pH, whereas those for the site II-ligands IS and dansylsarcosine (DNSS) were hardly affected by pH. Mutual displacement experiments showed that even though IS binds to site II it influenced binding of DNSA at the azapropazone binding area in site I. By contrast, it is unlikely that IS affects the WF binding area of site I. Furthermore, pH-profiles showed that the interaction between IS and DNSA was very sensitive to the N to B transition: "competitive-like" strong allosteric regulation was observed for binding of the two ligands to the N conformer (pH 6.5), whereas in the B conformation (pH 8.5) binding of these molecules was nearly "independent". CONCLUSIONS: The present data provide useful information for elucidating a potential mechanism of interaction between drugs and endogenous substances including uremic toxins.
机译:目的:进行该研究以阐明硫酸吲哚酚(IS)(一种结合到位点II的典型尿毒症毒素)和位点I-配体(当结合到人血清白蛋白(HSA)时)之间的相互作用机理。还检查了N向B跃迁对相互作用的影响。方法:通过平衡透析对结合至HSA的配体之间的关系进行定量研究,并在理论模型的基础上分析两个配体同时结合的结合数据。结果:位点I-配体华法林(WF)和丹磺酰基-L-天冬酰胺(DNSA)的高亲和力结合常数随pH值的增加而增加,而位点II-配体IS和丹磺酰肌氨酸(DNSS)的高亲和力结合常数几乎不受pH值相互置换实验表明,即使IS与位点II结合,它也会影响位点I上氮杂丙酮结合区的DNSA结合。相反,IS不太可能影响位点I的WF结合区。此外,pH谱显示IS和DNSA之间的相互作用对N向B的过渡非常敏感:两个配体与N构象体(pH 6.5)结合时观察到“竞争性”强变构调节,而B构象(pH 8.5)这些分子的结合几乎是“独立的”。结论:本数据为阐明药物与包括尿毒症毒素在内的内源性物质之间相互作用的潜在机制提供了有用的信息。

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