论文标题
Ferulate共轭物的区域选择性化学酶合成作为Feruloyl酯酶的发色底物
Regioselective chemo-enzymatic syntheses of ferulate conjugates as chromogenic substrates for feruloyl esterases
论文作者
论文摘要
通常,使用成色底物研究碳水化合物活性酶,这些酶可快速,易于基于颜色的酶介导的水解。在Feruloyl酯酶的情况下,在其实验应用方面,市售的发色系衍生物既昂贵又有限。在这项研究中,我们使用化学酶方法来描述这两个问题的解决方案,以合成不同的捕虫化合物。通往市售5-溴-4-氯-3-吲哚基和4-亚硝基苯基O-5-纤维素 - $α$α$ -L-阿拉伯硫代尿素1A和1B的总体合成途径显着短短(7-8步降至4-6),而46%至73%的46%至47%的人(4-6)的收益率(4-6)升至46至73%。这是使用酶(lanuginosus lanuginosus的固定脂肪酶100T)的未保护乙烯基捕灭的酶(固定脂肪酶100T)来实现的,以$α$ -L-阿罗酰呋喃糖苷为$α$ -L-丙氨酸的原代羟基。此外,还以3个步骤(收敛合成)以29%的总产率合成了一种新型的软酰丁二醇4-硝基甲醇4-硝基甲醇-1-基1-基类似物12。后一种路线结合了4-硝基甲醇和酶转移的区域选择性功能化。使用12个底物来表征尼日尔曲霉的A型Feruloyl酯酶的表征,这揭示了该基材对于Feruloyl酯酶的特征的优势。
Generally, carbohydrate-active enzymes are studied using chromogenic substrates that provide quick and easy color-based detection of enzyme-mediated hydrolysis. In the case of feruloyl esterases, commercially available chromogenic ferulate derivatives are both costly and limited in terms of their experimental application. In this study, we describe solutions for these two issues, using a chemoenzymatic approach to synthesize different ferulate compounds. The overall synthetic routes towards commercially available 5-bromo-4-chloro-3-indolyl and 4-nitrophenyl O-5-feruloyl-$α$-l-arabinofuranosides 1a and 1b were significantly shortened (7-8 steps reduced to 4-6) and transesterification yields enhanced (from 46 to 73% for 1a and 47 to 86 % for 1b). This was achieved using enzymatic (immobilized Lipolase 100T from Thermomyces lanuginosus) transesterification of unprotected vinyl ferulate to the primary hydroxyl group of $α$-l-arabinofuranosides. Moreover, a novel feruloylated-butanetriol 4-nitrocatechol-1-yl analog 12, containing a cleavable hydroxylated linker was also synthesized in 29% overall yield in 3 steps (convergent synthesis). The latter route combined regioselective functionalization of 4-nitrocatechol and enzymatic transferuloylation. The use of 12 as a substrate to characterize type A feruloyl esterase from Aspergillus niger reveals the advantages of this substrate for the characterizations of feruloyl esterases.