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首页> 外文期刊>Environmental Science and Pollution Research >Mechanistic insights into the specificity of human cytosolic sulfotransferase 2A1 (hSULT2A1) for hydroxylated polychlorinated biphenyls through the use of fluoro-tagged probes
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Mechanistic insights into the specificity of human cytosolic sulfotransferase 2A1 (hSULT2A1) for hydroxylated polychlorinated biphenyls through the use of fluoro-tagged probes

机译:通过使用氟代标探针,机械洞察羟基化多氯联苯的人胞嘧啶磺旋转酶2a1(Hsult2a1)的特异性

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Determining the relationships between the structures of substrates and inhibitors and their interactions with drug-metabolizing enzymes is of prime importance in predicting the toxic potential of new and legacy xenobiotics. Traditionally, quantitative structure activity relationship (QSAR) studies are performed with many distinct compounds. Based on the chemical properties of the tested compounds, complex relationships can be established so that models can be developed to predict toxicity of novel compounds. In this study, the use of fluorinated analogues as supplemental QSAR compounds was investigated. Substituting fluorine induces changes in electronic and steric properties of the substrate without substantially changing the chemical backbone of the substrate. In vitro assays were performed using purified human cytosolic sulfotransferase hSULT2A1 as a model enzyme. A mono-hydroxylated polychlorinated biphenyl (4-OH PCB 14) and its four possible mono-fluoro analogues were used as test compounds. Remarkable similarities were found between this approach and previously published QSAR studies for hSULT2A1. Both studies implicate the importance of dipole moment and dihedral angle as being important to PCB structure in respect to being substrates for hSULT2A1. We conclude that mono-fluorinated analogues of a target substrate can be a useful tool to study the structure activity relationships for enzyme specificity.
机译:确定基质和抑制剂结构与其与药物代谢酶的相互作用之间的关系是在预测新和遗产仇外化学的毒性潜力方面的主要重要性。传统上,用许多不同的化合物进行定量结构活性关系(QSAR)研究。基于测试化合物的化学性质,可以建立复杂的关系,使得可以开发模型以预测新化合物的毒性。在该研究中,研究了用氟化类似物作为补充QSAR化合物。替代氟引起基板的电子和空间性质的变化,而不基本上改变基材的化学骨架。使用纯化的人胞质磺硫转移酶HSult2a1作为模型酶进行体外测定。单羟基化多氯联苯(4-OH PCB14)及其四种可能的单氟类似物类似物用作试验化合物。在这种方法之间发现了显着的相似之处,并且以前发表了对HSULT2A1的QSAR研究。这两种研究都致力于偶极矩和二对角角度对PCB结构的重要性,即关于HSULT2A1的基板。我们得出结论,靶衬底的单氟化类似物可以是研究酶特异性的结构活性关系的有用工具。

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