4.6 Article

Isolation and characterization of a novel human intestinal Enterococcus faecium FUA027 capable of producing urolithin A from ellagic acid

期刊

FRONTIERS IN NUTRITION
卷 9, 期 -, 页码 -

出版社

FRONTIERS MEDIA SA
DOI: 10.3389/fnut.2022.1039697

关键词

ellagic acid; urolithin A; Enterococcus faecium; novel probiotic; metabolism

资金

  1. Priority Academic Program Development of Jiangsu Higher Education Institutions
  2. Key Natural Science Foundation of the Jiangsu Higher Education Institutions of China [20KJA550001]
  3. National Natural Science Foundation of Jiangsu Ocean University [KQ20041, KQ20052]
  4. Project 333 of Jiangsu Province
  5. Open-end Funds of Jiangsu Key Laboratory of Marine Bioresources and Environment [SH20191204]

向作者/读者索取更多资源

Urolithin A (UA) has health benefits and its production from ellagic acid (EA) by gut bacteria is poorly understood. In this study, a strain of Enterococcus faecium capable of converting EA into UA was isolated from fecal samples. UA production peaked at 50 hours, with a concentration of 10.80 mu M. This isolated strain provides valuable insights into the molecular mechanisms underlying the biotransformation of EA into UA.
Urolithin A (UA) has received considerable research attention because of its health benefits. However, only a few strains have been reported to produce UA from ellagic acid (EA), and the molecular mechanisms underlying the gut microbiota-mediated transformation of ellagic acid into urolithin A is limited. In the present study, a single strain FUA027 capable of converting ellagic acid into UA in vitro was isolated from the fecal samples. The strain was identified as Enterococcus faecium through the morphological, physiological, biochemical and genetic tests. UA was produced at the beginning of the stationary phase and its levels peaked at 50 h, with the highest concentration being 10.80 mu M. The strain Enterococcus faecium FUA027 is the first isolated strain of Enterococcus sp. producing urolithin A from ellagic acid, which may be developed as probiotics and used to explore molecular mechanisms underlying the biotransformation of ellagic acid into UA.

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