首页> 外文期刊>Bioscience, Biotechnology, and Biochemistry >4-O-Acetylation and 3-O-Acetylation of Trichothecenes by Trichothecene 15-O-Acetyltransferase Encoded by Fusarium Tri3
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4-O-Acetylation and 3-O-Acetylation of Trichothecenes by Trichothecene 15-O-Acetyltransferase Encoded by Fusarium Tri3

机译:镰刀菌属Tri3编码的天花粉蛋白15-O-乙酰基转移酶对单端孢菌烯的4-O-乙酰化和3-O-乙酰化

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摘要

In the biosynthesis of Fusarium trichothecenes, the C-3 hydroxyl group of isotrichodermol must be acety-lated by TRI101 for subsequent pathway genes to function. Despite the importance of this 3-O-acetylation step in biosynthesis, Tri101 is both physically and evolutionarily unrelated to other Tri genes in the trichothecene gene cluster. To gain insight into the evolutionary history of the cluster, we purified recombinant TRI3 (rTRI3), one of the two cluster gene-encoded trichothecene O-acetyltransferases, and examined to determine whether this 15-O-acetyltransferase can add an acetyl to the C-3 hydroxyl group of isotrichodermol. When a high concentration of rTRI3 was used in the assay (final concentration, 50 μm), we observed 3-O-acetylation activity against isotrichodermol that was more than 10~5 times less efficient than the known 15-O-acetylation activity against 15-deacetylcalonectrin. The rTRI3 protein also exhibited 4-O-acetylation activity when nivalenol was used as a substrate; in addition to 15-acetylnivalenol, di-acetylated derivatives, 4,15-diace-tylnivalenol, and, to a lesser extent, 3,15-diacetylniva-lenol, were also detected at high enzyme concentrations. The significance of the trace trichothecene 3-O-acetyl-transferase activity detected in rTRI3 is discussed in relation to the evolution of the trichothecene gene cluster.
机译:在毛霉镰刀菌的生物合成中,必须通过TRI101对异曲霉酚的C-3羟基进行乙酰化处理,以使后续的通路基因起作用。尽管此3-O-乙酰化步骤在生物合成中非常重要,但Tri101在物理上和进化上都与单端孢菌烯基因簇中的其他Tri基因无关。为了深入了解该簇的进化历史,我们纯化了重组的TRI3(rTRI3),这是两个簇基因编码的单端孢菌素O-乙酰基转移酶之一,并进行了检测以确定此15-O-乙酰基转移酶是否可以向C中添加乙酰基-间苯三酚的-3个羟基。当在测定中使用高浓度的rTRI3(最终浓度为50μm)时,我们观察到的对异麦角三醇的3-O-乙酰化活性比已知的针对15-O-乙酰化的15-O-乙酰化活性低10〜5倍-去乙酰钙素。当以新戊烯醇为底物时,rTRI3蛋白还表现出4-O-乙酰化活性。除15-乙酰基新萘烯醇外,在高酶浓度下还检测到二乙酰化衍生物,4,15-二烯丙基噻吩烯醇和3,15-二乙酰基新戊烯醇。讨论了与trichothecene基因簇的进化有关的在rTRI3中检测到的微量trichothecene 3-O-乙酰基转移酶活性的重要性。

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