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Flavonoid glucuronides are substrates for human liver β‐glucuronidase

机译:类黄酮葡萄糖醛酸苷是人肝脏β-葡萄糖醛酸苷酶的底物

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>Quercetin glucuronides are the main circulating metabolites of quercetin in humans. We hypothesise that the potential availability of the aglycone within tissues depends on the substrate specificity of the deconjugating enzyme β-glucuronidase towards circulating flavonoid glucuronides. Human tissues (small intestine, liver and neutrophils) exhibited β-glucuronidase against quercetin glucuronides. The various quercetin glucuronides were deconjugated at similar rates, but liver cell-free extracts were the most efficient and the activity was completely inhibited by saccharo-1,4-lactone (a β-glucuronidase inhibitor). Furthermore, pure recombinant human β-glucuronidase hydrolysed various flavonoid glucuronides, with a 20-fold variation in catalytic efficiency (k cat/K m=1.3×103 M−1 s−1 for equol-7-O-glucuronide and 26×103 M−1 s−1 for kaempferol-3-O-glucuronide). Similar catalytic efficiencies were obtained for quercetin O-glucuronides substituted at different positions. These results show that flavonoid glucuronides can be deconjugated by microsomal β-glucuronidase from various human cells.
机译:槲皮素葡萄糖醛酸苷是槲皮素在人体内的主要循环代谢产物。我们假设组织中糖苷配基的潜在可用性取决于解偶联酶β-葡萄糖醛酸苷酶对循环类黄酮葡萄糖醛酸苷的底物特异性。人体组织(小肠,肝脏和中性粒细胞)表现出针对槲皮素葡萄糖醛酸苷的β-葡萄糖醛酸苷酶。各种槲皮素葡糖醛酸苷以相似的速率解偶联,但是无肝细胞提取物最有效,并且活性被糖精1,4-内酯(β-葡糖醛酸苷酶抑制剂)完全抑制。此外,纯的重组人β-葡萄糖醛酸苷酶水解了各种类黄酮葡萄糖醛酸苷,催化效率变化了20倍( k cat / K m = 1.3×10 3 M −1 s −1 表示雌马酚7- O -葡糖苷酸和山×酚-3- O -葡糖苷酸的26×10 3 M −1 s −1 )。对于在不同位置取代的槲皮素 O -葡糖醛酸苷,获得了相似的催化效率。这些结果表明类黄酮葡糖醛酸苷可以被来自各种人细胞的微粒体β-葡糖醛酸苷酸酶解偶联。

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