4.7 Article

Zearalenone-16-O-glucoside: A New Masked Mycotoxin

期刊

JOURNAL OF AGRICULTURAL AND FOOD CHEMISTRY
卷 62, 期 5, 页码 1181-1189

出版社

AMER CHEMICAL SOC
DOI: 10.1021/jf405627d

关键词

Fusarium; zearalenone; xenoestrogen; UDP-glucosyltransferase; heterologous expression; yeast; barley; wheat; Brachypodium

资金

  1. Austrian Science Fund (FWF) [F3706, F3708]
  2. U.S. Wheat and Barley Scab Initiative (U.S. Department of Agriculture, Agricultural Research Service)
  3. Minnesota Small Grains Initiative
  4. Federal Ministry of Economy, Family and Youth
  5. National Foundation for Research, Technology and Development, BIOMIN Holding GmbH
  6. Nestec Ltd.

向作者/读者索取更多资源

This paper reports the identification of a barley UDP-glucosyltransferase, HvUGT14077, which is able to convert the estrogenic Fusarium mycotoxin zearalenone into a near-equimolar mixture of the known masked mycotoxin zearalenone-14-O-beta-glucoside and a new glucose conjugate, zearalenone-16-O-beta-glucoside. Biocatalytical production using engineered yeast expressing the HvUGT14077 gene allowed structural elucidation of this compound. The purified zearalenone-16-O-beta-glucoside was used as an analytical calibrant in zearalenone metabolization experiments. This study confirmed the formation of this new masked mycotoxin in barley seedlings as well as in wheat and Brachypodium distachyon cell suspension cultures. In barley roots, up to 18-fold higher levels of zearalenone-16-O-beta-glucoside compared to the known zearalenone-14-O-beta-glucoside were found. Incubation of zearalenone-16-O-beta-glucoside with human fecal slurry showed that this conjugate can also be hydrolyzed rapidly by intestinal bacteria, converting the glucoside back to the parental mycotoxin. Consequently, it should be considered as an additional masked form of zearalenone with potential relevance for food safety.

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