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合成一系列苯乙酸 1-β-O-酰基葡萄糖苷,并比较它们的酰基迁移和水解动力学与相应的酰基葡萄糖醛酸苷。

Synthesis of a series of phenylacetic acid 1-β-O-acyl glucosides and comparison of their acyl migration and hydrolysis kinetics with the corresponding acyl glucuronides.

机构信息

Department of Chemistry, The Robert Robinson Laboratories, University of Liverpool, Liverpool, UK L69 7ZD.

出版信息

Org Biomol Chem. 2011 Feb 7;9(3):926-34. doi: 10.1039/c0ob00820f. Epub 2010 Dec 8.

Abstract

We report the synthesis of the 1-β-O-acyl glucoside conjugates of phenylacetic acid (PAA), R- and S-α-methyl-PAA and α,α'-dimethyl-PAA, and measurement of their transacylation and hydrolysis reactivity by NMR methods. These are analogues of acyl glucuronides, the transacylation kinetics of which could be important in adverse drug effects. One aim of this work was to investigate whether, as previously postulated, the free carboxylate group of the acyl glucuronides plays a part in the mechanism of the internal acyl migration. In addition, such acyl glucosides are known to be endogenous biochemicals in their own right and investigation of their acyl migration propensities is novel. Our previously described selective acylation procedure has proved highly successful for 1-β-O-acyl glucuronide synthesis and when subsequently applied to 6-O-trityl glucose, it gave good yields and excellent anomeric selectivity. Mild acidolysis of the O-trityl intermediates gave the desired acyl glucosides in excellent yield with essentially complete β-selectivity. Measurement of the acyl glucoside transacylation kinetics by (1)H NMR spectroscopy, based simply on the disappearance of the 1-β-isomer in aqueous buffer at pH 7.4, showed marked differences depending on the degree of methyl substitution. Further kinetic modelling of the isomerisation and hydrolysis reactions of the acyl glucosides showed considerable differences in kinetics for the various isomeric reactions. Reactions involving the -CH(2)OH group, presumably via a 6-membered ring ortho-ester intermediate, are facile and the α-glucoside anomers are significantly more reactive than their β-counterparts. By comparison with degradation rates for the corresponding acyl glucuronides, it can be inferred that substitution of the carboxylate by -CH(2)OH in the acyl glucosides has a significant effect on acyl migration for those compounds, especially for rapidly transacylating molecules, and that thus the charged glucuronide carboxylate is a factor in the kinetics.

摘要

我们报告了苯乙酸(PAA)、R-和 S-α-甲基-PAA 以及 α,α'-二甲基-PAA 的 1-β-O-酰基葡萄糖苷轭合物的合成,并通过 NMR 方法测量了它们的转酰基化和水解反应性。这些是酰基葡萄糖醛酸的类似物,其转酰基化动力学在药物不良反应中可能很重要。这项工作的目的之一是研究酰基葡萄糖醛酸的游离羧酸盐基团是否如先前假设的那样在内部酰基迁移机制中起作用。此外,这些酰基葡萄糖苷本身就是已知的内源性生化物质,因此研究它们的酰基迁移倾向是新颖的。我们之前描述的选择性酰化程序已被证明对 1-β-O-酰基葡萄糖苷合成非常成功,当随后应用于 6-O-三苯甲基葡萄糖时,它给出了良好的产率和优异的非对映选择性。O-三苯甲基中间体的温和酸解以极好的产率和基本上完全的β选择性得到了所需的酰基葡萄糖苷。通过(1)H NMR 光谱简单地基于在 pH 7.4 的水性缓冲液中 1-β-异构体的消失来测量酰基葡萄糖苷的转酰基化动力学,发现取决于甲基取代程度有明显的差异。酰基葡萄糖苷的异构化和水解反应的进一步动力学建模表明,各种异构反应的动力学有很大差异。涉及-CH(2)OH 基团的反应,大概通过 6 元环邻酯中间体,是容易的,并且α-葡萄糖苷的α异构体比它们的β异构体明显更具反应性。与相应的酰基葡萄糖醛酸的降解速率相比,可以推断出在酰基葡萄糖苷中,羧酸盐被-CH(2)OH 取代对那些化合物的酰基迁移有显著影响,特别是对快速转酰化的分子,并且因此带电荷的葡萄糖醛酸羧酸盐是动力学中的一个因素。

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