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Biochemical Characterization of a Recombinant UDP-glucosyltransferase from Rice and Enzymatic Production of Deoxynivalenol-3-O-β-d-glucoside

机译:水稻重组UDP-葡萄糖基转移酶的生化特性及脱氧雪腐酚-3-O-β-d-葡萄糖苷的酶促生产

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摘要

Glycosylation is an important plant defense mechanism and conjugates of Fusarium mycotoxins often co-occur with their parent compounds in cereal-based food and feed. In case of deoxynivalenol (DON), deoxynivalenol-3-O-β-d-glucoside (D3G) is the most important masked mycotoxin. The toxicological significance of D3G is not yet fully understood so that it is crucial to obtain this compound in pure and sufficient quantities for toxicological risk assessment and for use as an analytical standard. The aim of this study was the biochemical characterization of a DON-inactivating UDP-glucosyltransferase from rice (OsUGT79) and to investigate its suitability for preparative D3G synthesis. Apparent Michaelis constants (Km) of recombinant OsUGT79 were 0.23 mM DON and 2.2 mM UDP-glucose. Substrate inhibition occurred at DON concentrations above 2 mM (Ki = 24 mM DON), and UDP strongly inhibited the enzyme. Cu2+ and Zn2+ (1 mM) inhibited the enzyme completely. Sucrose synthase AtSUS1 was employed to regenerate UDP-glucose during the glucosylation reaction. With this approach, optimal conversion rates can be obtained at limited concentrations of the costly co-factor UDP-glucose. D3G can now be synthesized in sufficient quantity and purity. Similar strategies may be of interest to produce β-glucosides of other toxins.
机译:糖基化是一种重要的植物防御机制,镰刀菌霉菌毒素的结合物经常与谷类食品和饲料中的母体化合物共存。对于脱氧雪茄烯醇(DON),脱氧雪茄烯醇-3-O-β-d-葡萄糖苷(D3G)是最重要的掩盖真菌毒素。 D3G的毒理学意义尚未完全理解,因此获取纯净和足够量的该化合物以进行毒理学风险评估和用作分析标准至关重要。这项研究的目的是从水稻中分离出DON的UDP-葡萄糖基转移酶(OsUGT79)的生化特性,并研究其对制备D3G合成的适用性。重组OsUGT79的表观Michaelis常数(Km)为0.23 mM DON和2.2 mM UDP-葡萄糖。在高于2 mM(Ki = 24 mM DON)的DON浓度下发生底物抑制,并且UDP强烈抑制了该酶。 Cu 2 + 和Zn 2 + (1 mM)完全抑制了该酶。在糖基化反应期间,使用蔗糖合酶AtSUS1来再生UDP-葡萄糖。使用这种方法,可以在昂贵的辅因子UDP葡萄糖的有限浓度下获得最佳转化率。现在可以合成足够数量和纯度的D3G。类似的策略可能对产生其他毒素的β-葡萄糖苷很有用。

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