Dipartimento di Agrobiologia e Agrochimica, Università degli Studi della Tuscia, Viterbo, Italy.
J Org Chem. 2011 Feb 4;76(3):820-32. doi: 10.1021/jo101886s. Epub 2011 Jan 4.
Catechin derivatives were oxidized in air in the presence of the Trametes villosa laccase/1-hydroxybenzotriazole (HBT) system in buffered water/1,4-dioxane as reaction medium. The oxidation products, flavan-3,4-diols and the corresponding C-4 ketones, are bioactive compounds and useful intermediates for the hemisynthesis of proanthocyanidins, plant polyphenols which provide beneficial health properties for humans. Determinations of oxidation potentials excluded that catechin derivatives could be directly oxidized by laccase Cu(II), while it resulted in the H-abstraction from benzylic positions being promptly promoted by the enzyme in the presence of the mediator HBT, the parent species producing in situ the reactive intermediate benzotriazole-N-oxyl (BTNO) radical. A remarkable and unexpected result for the laccase/HBT oxidative system has been the chemoselective insertion of the oxygen atom into the C-4-H bond of catechin derivatives. Mechanistic aspects of the oxidation reaction have been investigated in detail for the first time in order to corroborate these results. Since the collected experimental findings could not alone provide information useful to clarify the origin of the observed chemoselectivity, these data were expressly supplemented with information derived by suitable molecular modeling investigations. The integrated evaluation of the dissociation energies of the C-H bonds calculated both by semiempirical and DFT methods and the differential activation energies of the process estimated by a molecular modeling approach suggested that the observed selective oxidation at the C-4 carbon has a kinetic origin.
儿茶素衍生物在空气中,在白腐菌漆酶/1-羟基苯并三唑(HBT)体系存在下,在缓冲水/1,4-二氧六环中作为反应介质被氧化。氧化产物为黄烷-3,4-二醇和相应的 C-4 酮,它们是生物活性化合物和前花青素(植物多酚)半合成的有用中间体,植物多酚为人类提供有益的健康特性。氧化电位的测定排除了儿茶素衍生物可以被漆酶 Cu(II)直接氧化,而在介体 HBT 的存在下,酶会迅速促进苄位的 H 提取,母体物质原位产生反应性中间物苯并三唑-N-氧化物(BTNO)自由基。漆酶/HBT 氧化体系的一个显著且意外的结果是,氧原子选择性地插入儿茶素衍生物的 C-4-H 键中。为了证实这些结果,首次详细研究了氧化反应的机理。由于收集到的实验结果本身并不能提供澄清观察到的化学选择性起源的有用信息,因此特别补充了通过适当的分子建模研究获得的信息。通过半经验和 DFT 方法计算的 C-H 键离解能和通过分子建模方法估计的过程的差分活化能的综合评估表明,观察到的 C-4 碳选择性氧化具有动力学起源。