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Deglycosylation of isoflavone C-glycosides by newly isolated human intestinal bacteria
被引:63
作者:
Kim, Mihyang
Lee, Jaekwan
Han, Jaehong
[1
]
机构:
[1] Chung Ang Univ, Metalloenzyme Res Grp, Anseong 456756, South Korea
基金:
新加坡国家研究基金会;
关键词:
deglycosylation;
human intestinal bacteria;
isoflavone C-glycoside;
isoflavone O-glycoside;
puerarin;
ABSOLUTE-CONFIGURATION;
SOY ISOFLAVONES;
PUERARIN;
METABOLISM;
(3S)-EQUOL;
FLAVONOIDS;
BIOTRANSFORMATION;
IDENTIFICATION;
MICROFLORA;
EQUOL;
D O I:
10.1002/jsfa.6900
中图分类号:
S [农业科学];
学科分类号:
09 ;
摘要:
BACKGROUNDPlant isoflavones are mostly present in the glycoside form. Isoflavone aglycones produced by intestinal microflora are reported to be more bioactive than the glycoside form. However, the deglycosylation of isoflavone C-glycosides is known to be rare, and is less studied. RESULTSThree new bacteria were isolated from human faecal samples, two of which hydrolysed the C-glycosidic bond of puerarin, daidzein-8-C-glucoside. They were identified as two Lactococcus species, herein designated as MRG-IFC-1 and MRG-IFC-3, and an Enterococcus species, herein designated MRG-IFC-2, based on their 16S rDNA sequences. From a reactivity study, it was found that Lactococcus sp. MRG-IFC-1 and Enterococcus sp. MRG-IFC-2 hydrolysed isoflavone C- and O-glycosides, as well as the flavone O-glycoside apigetrin, but could not hydrolyse the flavone C-glycosidic bond of vitexin. The other Lactococcus sp., MRG-IF-3, could not hydrolyse the C-glycosidic linkage of puerarin, while it showed a broad substrate spectrum of O-glycosidase activity similar to the other two bacteria. Puerarin was completely converted to daidzein within 100min by Lactococcus sp. MRG-IFC-1 and Enterococcus sp. MRG-IFC-2, which is the fastest conversion among the reported human intestinal bacteria. CONCLUSIONTwo new puerarin-metabolising human intestinal bacteria were isolated and identified, and the deglycosylation activity for various flavonoid glycosides was investigated. The results could facilitate the study of C-glycosidase reaction mechanisms, as well as the pharmacokinetics of bioactive C-glycoside natural products. (c) 2014 Society of Chemical Industry
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页码:1925 / 1931
页数:7
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