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1-β-O-酰基葡萄糖醛酸苷降解反应的构效关系。第2部分:预测源自苯甲酸的1-β-O-酰基葡萄糖醛酸苷反应活性的电子和空间描述符。

Structure-activity relationships for the degradation reaction of 1-beta-O-acyl glucuronides. Part 2: Electronic and steric descriptors predicting the reactivity of 1-beta-O-acyl glucuronides derived from benzoic acids.

作者信息

Yoshioka Tadao, Baba Akiko

机构信息

Hokkaido Pharmaceutical University School of Pharmacy, 7-1 Katsuraoka-cho, Otaru, Hokkaido 047-0264, Japan.

出版信息

Chem Res Toxicol. 2009 Sep;22(9):1559-69. doi: 10.1021/tx900092z.

Abstract

Glucuronidation of carboxylic acid drugs has been found to be a metabolic activation pathway, possibly leading to covalent binding of the resultant 1-beta-O-acyl glucuronides (beta GAs) to proteins. Previous studies on the structure-activity relationships (SARs) of the degradation rate constants (k values) of beta GAs have revealed that the electrophilicity of and steric hindrance around the 1-beta-O-acyl linkages cause the diversity and complexity of the observed k values. To evaluate these effects and ultimately predict the k values of structurally diverse beta GAs, we derived further SARs for k values of 18 1-beta-O-benzoyl glucuronides with o-, m-, and p-substituents (BAGAs). In single regression analyses of 10 m- and p-substituted BAGAs, the log k values were well-predicted using an electronic parameter of Hammett's sigma constant, pK(a), (1)H NMR chemical shift (delta(COOH)), computed delta(COOH), or computed partial atomic charge (H(PAC) or O(PAC)) of the parent benzoic acids. The log k values of eight o-substituted BAGAs, although showing a correlation with the (13)C NMR chemical shift of the parent benzoic acids [delta(C=O)OH)], were well-predicted using multiple regression analyses; some combinations of electronic (delta(COOH), H(PAC), or calculated pK(a)) and steric [delta(C=O)OH) or Es] descriptors predicted the 18 observed k values with a high degree of certainty. The standard partial regression coefficients indicate that steric effects affected the k values as strongly as electronic effects, indicating that the k values increase as the acidity of the parent acids increases and as the steric bulkiness around the 1-beta-O-acyl linkages decreases. These single and multiple regression equations, using different electronic and/or steric descriptors of the parent benzoic acids, are expected to be useful for predicting the k values of BAGAs. The applicability domain and mechanistic interpretation of the derived SAR models are also discussed together with the relevant toxicology of beta GAs.

摘要

羧酸类药物的葡萄糖醛酸化已被发现是一条代谢活化途径,可能导致所生成的1-β-O-酰基葡萄糖醛酸苷(βGAs)与蛋白质发生共价结合。先前关于βGAs降解速率常数(k值)的构效关系(SARs)研究表明,1-β-O-酰基键周围的亲电性和空间位阻导致了所观察到的k值的多样性和复杂性。为了评估这些影响并最终预测结构多样的βGAs的k值,我们推导了18种带有邻位、间位和对位取代基的1-β-O-苯甲酰基葡萄糖醛酸苷(BAGAs)k值的进一步SARs。在对10种间位和对位取代的BAGAs进行的单变量回归分析中,使用哈米特σ常数的电子参数、pK(a)、(1)H NMR化学位移(δ(COOH))、计算得到的δ(COOH)或母体苯甲酸的计算部分原子电荷(H(PAC)或O(PAC)),可以很好地预测log k值。8种邻位取代的BAGAs的log k值,虽然与母体苯甲酸的(13)C NMR化学位移[δ(C=O)OH]存在相关性,但使用多变量回归分析可以很好地预测;一些电子(δ(COOH)、H(PAC)或计算得到的pK(a))和空间(δ(C=O)OH)或Es)描述符的组合能够高度准确地预测18个观察到的k值。标准偏回归系数表明,空间效应与电子效应一样强烈地影响k值,这表明k值随着母体酸酸度的增加以及1-β-O-酰基键周围空间位阻的减小而增加。这些使用母体苯甲酸不同电子和/或空间描述符的单变量和多变量回归方程,有望用于预测BAGAs的k值。还讨论了所推导的SAR模型的适用范围和机理解释以及βGAs的相关毒理学。

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