Key Laboratory of Phytochemical R&D of Hunan Province, Key Laboratory of Chemical Biology and Traditional Chinese Medicine Research (Ministry of Education of China), Hunan Normal University, Changsha, China.
Department of Biomedical and Molecular Sciences, Queen's University, Kingston, Ontario, Canada.
Crit Rev Food Sci Nutr. 2024;64(5):1312-1339. doi: 10.1080/10408398.2022.2115456. Epub 2022 Aug 29.
Quercetin is the most abundant polyphenolic flavonoid (flavonol subclass) in vegetal foods and medicinal plants. This dietary chemopreventive agent has drawn significant interest for its multiple beneficial health effects ("polypharmacology") largely associated with the well-documented antioxidant properties. However, controversies exist in the literature due to its dual anti-/pro-oxidant character, poor stability/bioavailability but multifaceted bioactivities, leaving much confusion as to its exact roles in vivo. Increasing evidence indicates that a prior oxidation of quercetin to generate an array of chemical diverse products with redox-active/electrophilic moieties is emerging as a new linkage to its versatile actions. The present review aims to provide a comprehensive overview of the oxidative conversion of quercetin by systematically analyzing the current quercetin-related knowledge, with a particular focus on the complete spectrum of metabolite products, the enzymes involved in the catabolism and the underlying molecular mechanisms. Herein we review and compare the oxidation pathways, protein structures and catalytic patterns of the related metalloenzymes (phenol oxidases, heme enzymes and specially quercetinases), aiming for a deeper mechanistic understanding of the unusual biotransformation behaviors of quercetin and its seemingly controversial biological functions.
槲皮素是植物性食物和药用植物中含量最丰富的多酚类黄酮(黄酮醇亚类)。这种饮食性化学预防剂因其多种有益的健康作用(“多药理学”)而引起了极大的关注,这些作用主要与已充分记录的抗氧化特性有关。然而,由于其双重的抗/促氧化剂特性、较差的稳定性/生物利用度但多方面的生物活性,文献中存在争议,这使得其在体内的确切作用仍存在很大的困惑。越来越多的证据表明,槲皮素的预先氧化会产生一系列具有氧化还原活性/亲电性部分的化学多样性产物,这与其多功能作用之间出现了新的联系。本综述旨在通过系统分析当前与槲皮素相关的知识,提供槲皮素氧化转化的全面概述,特别关注代谢产物的完整谱、参与分解代谢的酶以及潜在的分子机制。在此,我们综述并比较了相关金属酶(多酚氧化酶、血红素酶和特别的槲皮素酶)的氧化途径、蛋白质结构和催化模式,旨在更深入地了解槲皮素异常的生物转化行为及其看似有争议的生物学功能的机制。