Laboratory of Biomolecules Engineering (LIBio), Lorraine University, Vandœuvre-lès-Nancy, France.
Laboratory of Reactions and Process Engineering (LRGP-UMR 7274), Lorraine University, Vandœuvre-lès-Nancy, France.
Biotechnol Appl Biochem. 2022 Aug;69(4):1438-1450. doi: 10.1002/bab.2215. Epub 2021 Jul 5.
A new glyco-phenol was produced by the coupling between glucosamine (Glu) and ferulic acid (FA) using Myceliophthora thermophila laccase as biocatalyst in mild conditions (distilled water and 30°C) as an environmentally friendly process. Results indicated that the enzymatic reaction created a new derivative (FA-Glu), produced from coupling between Glu and FA by covalent bonds. By the high production of (FA-Glu) derivative and its stability, the optimal ratio of (FA:Glu) was of (1:1) at optimal time reaction of 6 h. Under these optimal conditions, almost 55% of -NH groups on Glu were bound with FA oxidation products. The new derivative showed higher hydrophobic character than Glu due to the presence of FA in its structure. Liquid chromatography-mass spectrometry analysis showed that (FA-Glu) derivative exhibited a molecular mass at MM 713 g/mol containing one Glu molecule and three FA molecules after decarboxylation. Furthermore, the new derivative presented good antioxidant and antiproliferative activities in comparison with Glu and FA. These results suggest that the enzymatic conjugation between Glu and FA is a promising process to produce a new glyco-phenol having good functional properties for potential applications.
一种新型的糖酚通过嗜热真菌漆酶在温和条件下(蒸馏水和 30°C)作为一种环保的方法,将氨基葡萄糖(Glu)和阿魏酸(FA)偶联而产生。结果表明,酶反应通过共价键在 Glu 和 FA 之间形成了一种新的衍生物(FA-Glu)。由于(FA-Glu)衍生物的高产量和稳定性,在最佳反应时间 6 h 时,(FA:Glu)的最佳比例为 1:1。在这些最佳条件下,Glu 上几乎 55%的-NH 基团与 FA 的氧化产物结合。由于其结构中存在 FA,新衍生物表现出比 Glu 更高的疏水性。液质联用分析表明,(FA-Glu)衍生物在脱羧后表现出分子量为 MM 713 g/mol 的特征,含有一个 Glu 分子和三个 FA 分子。此外,与 Glu 和 FA 相比,新衍生物具有良好的抗氧化和抗增殖活性。这些结果表明,Glu 和 FA 之间的酶偶联是一种有前途的生产具有良好功能特性的新型糖酚的方法,可用于潜在应用。