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四种类黄酮(姜黄素、山柰酚、槲皮素、杨梅素)对 CpLIP2 脂肪酶水解活性的抑制作用与奥利司他的比较及其通过荧光猝灭研究的结合机制。

Inhibition of CpLIP2 Lipase Hydrolytic Activity by Four Flavonols (Galangin, Kaempferol, Quercetin, Myricetin) Compared to Orlistat and Their Binding Mechanisms Studied by Quenching of Fluorescence.

机构信息

UMR 1208 IATE, Université de Montpellier, 34095 Montpellier, France.

UMR 1208 IATE, Montpellier SupAgro, Place Viala, 34060 Montpellier, France.

出版信息

Molecules. 2019 Aug 8;24(16):2888. doi: 10.3390/molecules24162888.

Abstract

The inhibition of recombinant CpLIP2 lipase/acyltransferase from was considered a key model for novel antifungal drug discovery and a potential therapeutic target for candidiasis. Lipases have identified recently as potent virulence factors in and some other yeasts. The inhibition effects of orlistat and four flavonols (galangin, kaempferol, quercetin and myricetin) characterized by an increasing degree of hydroxylation in B-ring, were investigated using ethyl oleate hydrolysis as the model reaction. Orlistat and kaempferol (14 µM) strongly inhibited CpLIP2 catalytic activity within 1 min of pre-incubation, by 90% and 80%, respectively. The relative potency of flavonols as inhibitors was: kaempferol > quercetin > myricetin > galangin. The results suggested that orlistat bound to the catalytic site while kaempferol interacted with W294 on the protein lid. A static mechanism of interactions between flavonols and CpLIP2 lipase was confirmed by fluorescence quenching analyses, indicating that the interactions were mainly driven by hydrophobic bonds and electrostatic forces. From the Lehrer equation, fractions of tryptophan accessibility to the quencher were evaluated, and a relationship with the calculated number of binding sites was suggested.

摘要

来自 的重组 CpLIP2 脂肪酶/酰基转移酶的抑制作用被认为是新型抗真菌药物发现的关键模型,也是念珠菌病的潜在治疗靶点。脂肪酶最近被鉴定为 和其他一些酵母中的强效毒力因子。使用油酸乙酯水解作为模型反应,研究了奥利司他和四种黄酮醇(姜黄素、山奈酚、槲皮素和杨梅素)的抑制作用,这些黄酮醇在 B 环上的羟基化程度逐渐增加。奥利司他和山奈酚(14 μM)在预孵育 1 分钟内强烈抑制 CpLIP2 的催化活性,分别抑制 90%和 80%。作为抑制剂的黄酮醇的相对效力为:山奈酚>槲皮素>杨梅素>姜黄素。结果表明,奥利司他结合在催化位点上,而山奈酚与蛋白盖的 W294 相互作用。荧光猝灭分析证实了黄酮醇与 CpLIP2 脂肪酶之间相互作用的静态机制,表明相互作用主要由疏水键和静电力驱动。根据 Lehrer 方程,评估了色氨酸对猝灭剂的可及分数,并提出了与计算结合位点数的关系。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7b4a/6719172/316060c5726b/molecules-24-02888-g001.jpg

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