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A screening system for inhibitors of trichothecene biosynthesis: hydroxylation of trichodiene as a target

机译:天花粉生物合成抑制剂的筛选系统:以天花粉烯为目标的羟基化反应

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摘要

Fusarium Tri4 encodes a key cytochrome P450 monooxygenase for hydroxylation of trichodiene early in the biosynthesis of trichothecenes. In this study, we established a system for screening for inhibitors of trichothecene biosynthesis using transgenic Saccharomyces cerevisiae expressing Tri4. For easy evaluation of the TRI4 activity, trichodiene-11-one was used as a substrate and the formation of 2 alpha-hydroxytrichodiene-11-one was monitored by HPLC. Using this system, TRI4 proved to be inhibited by various flavones and furanocoumarins. We also found that a catechin-containing commercial beverage product, Catechin Supplement 300 (CS300), inhibited TRI4 activity, at a concentration which did not significantly affect the growth of the transgenic yeast. At an early stage of culture, both flavone and CS300 exhibited a toxin-inhibitory activity against Fusarium graminearum. However, inhibition of trichothecene production was not observed with longer incubation periods at minimum concentrations necessary to inhibit > 50% of the TRI4 activity, presumably due to the metabolism by the fungus. The results suggest that this yeast screening system with TRI4 is useful for the rapid identification of lead compounds for the design of trichothecene biosynthesis inhibitors that are resistant to modification by the fungus.
机译:镰刀菌Tri4编码在毛孢菌素的生物合成早期用于毛滴虫烯羟基化的关键细胞色素P450单加氧酶。在这项研究中,我们建立了使用表达Tri4的转基因酿酒酵母筛选天花粉生物合成抑制剂的系统。为了容易地评估TRI4活性,将三甲叉二烯-11-one用作底物,并通过HPLC监测2α-羟基-trichodiene-11-one的形成。使用该系统,TRI4被证明可被多种黄酮和呋喃香豆素抑制。我们还发现含儿茶素的商业饮料产品儿茶素补充剂300(CS300)抑制TRI4活性,其浓度不会显着影响转基因酵母的生长。在培养的早期,黄酮和CS300均表现出针对禾谷镰刀菌的毒素抑制活性。但是,在较长的孵育时间中,未抑制抑制大于50%的TRI4活性所需的最低浓度,却未观察到天花粉产生的抑制作用,这可能是由于真菌的新陈代谢所致。结果表明,该具有TRI4的酵母筛选系统可用于快速鉴定先导化合物,以设计对真菌修饰具有抗性的天花粉生物合成抑制剂。

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