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从枯草芽孢杆菌中发现一种新型磷酸转移酶,能磷酸化多种黄酮类化合物。

Discovery of a novel phosphotransferase from Bacillus subtilis that phosphorylates a broad spectrum of flavonoids.

机构信息

Department of Agricultural Chemistry, National Taiwan University, Taipei 10617, Taiwan.

Genomics Research Center, Academia Sinica, Taipei 11529, Taiwan.

出版信息

Food Chem. 2023 Jan 30;400:134001. doi: 10.1016/j.foodchem.2022.134001. Epub 2022 Aug 24.

Abstract

Flavonoids are associated with health benefits, but most of them have poor oral bioavailability due to their extremely low aqueous solubility. Flavonoid O-phosphorylation suggests a potent modification to solve the problems. Here, we isolated, identified and characterized an unprecedented phosphotransferase, flavonoid phosphate synthetase (BsFPS), from B. subtilis. The enzyme catalyzes the ATP-dependent phosphorylation of flavonoid to generate flavonoid monophosphates, AMP and orthophosphate. BsFPS is a promiscuous phosphotransferase that efficiently catalyzes structurally-diverse flavonoids, including isoflavones, flavones, flavonols, flavanones and flavonolignans. Based on MS and NMR analysis, the phosphorylation mainly occurs on the hydroxyl group at C-7 of A-ring or C-4' of B-ring in flavonoid skeleton. Notably, BsFPS is regioselective for the ortho-3',4'-dihydroxy moiety of catechol-containing structures, such as luteolin and quercetin, to produce phosphate conjugates at C-4' or C-3' of B-ring. Our findings highlight the potential for developing biosynthetic platform to obtain new phosphorylated flavonoids for pharmaceutical and nutraceutical applications.

摘要

类黄酮与健康益处有关,但由于其极低的水溶解度,大多数类黄酮的口服生物利用度都很差。类黄酮的 O-磷酸化表明这是一种强有力的修饰方法,可以解决这些问题。在这里,我们从枯草芽孢杆菌中分离、鉴定并表征了一种前所未有的磷酸转移酶,即黄酮磷酸合成酶(BsFPS)。该酶催化在 ATP 依赖性条件下将黄酮类化合物磷酸化,生成黄酮单磷酸、AMP 和正磷酸盐。BsFPS 是一种混杂的磷酸转移酶,能够有效地催化结构多样的黄酮类化合物,包括异黄酮、黄酮、黄酮醇、黄烷酮和黄酮木脂素。基于 MS 和 NMR 分析,磷酸化主要发生在黄酮骨架 A 环的 C-7 位或 B 环的 C-4'位上的羟基。值得注意的是,BsFPS 对含有邻苯二酚结构的化合物(如木樨草素和槲皮素)具有区域选择性,可在 B 环的 C-4'或 C-3'位生成磷酸化缀合物。我们的研究结果突出了开发生物合成平台的潜力,以获得新的具有药用和营养保健品应用潜力的磷酸化类黄酮。

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