Area of Microbiology , University of León, Campus de Ponferrada , Ponferrada 24400 , Spain.
Mycotoxin Prevention and Applied Microbiology Research Unit , National Center for Agricultural Utilization Research, United States Department of Agriculture , Peoria , Illinois 61604-3902 , United States.
J Agric Food Chem. 2019 Jan 16;67(2):723-734. doi: 10.1021/acs.jafc.8b05564. Epub 2019 Jan 5.
Trichothecenes are sesquiterpenoid toxins produced by multiple fungi, including plant pathogens, entomopathogens, and saprotrophs. Most of these fungi have the acyltransferase-encoding gene tri18. Even though its function has not been determined, tri18 is predicted to be involved in trichothecene biosynthesis because of its pattern of expression and its location near other trichothecene biosynthetic genes. Here, molecular genetic, precursor feeding, and analytical chemistry experiments indicate that in the saprotroph Trichoderma arundinaceum the tri18-encoded acyltransferase (TRI18) and a previously characterized acyltransferase (TRI3) are required for conversion of the trichothecene biosynthetic intermediate trichodermol to harzianum A, an antifungal trichothecene analog with an octa-2,4,6-trienedioyl acyl group. On the basis of the results, we propose that TRI3 catalyzes trichothecene 4- O-acetylation, and subsequently, TRI18 catalyzes replacement of the resulting acetyl group with octa-2,4,6-trienedioyl to form harzianum A. Thus, the findings provide evidence for a previously unrecognized two-step acylation process during trichothecene biosynthesis in T. arundinaceum and possibly other fungi.
译文:
三萜烯类化合物是由多种真菌产生的倍半萜毒素,包括植物病原体、昆虫病原体和腐生真菌。这些真菌中的大多数都含有编码酰基转移酶的基因 tri18。尽管其功能尚未确定,但由于其表达模式及其在其他三萜烯生物合成基因附近的位置,tri18 被预测参与三萜烯生物合成。
在这里,分子遗传学、前体喂养和分析化学实验表明,在腐生真菌木霉中,tri18 编码的酰基转移酶 (TRI18) 和先前表征的酰基转移酶 (TRI3) 是将三萜烯生物合成中间体 Trichodermol 转化为具有八-2,4,6-三烯酰基的抗真菌三萜烯类似物 harzianum A 所必需的。根据结果,我们提出 TRI3 催化三萜烯 4-O-乙酰化,随后 TRI18 催化取代所得的乙酰基为八-2,4,6-三烯酰基以形成 harzianum A。因此,这些发现为木霉中以及可能其他真菌中三萜烯生物合成过程中的先前未被识别的两步酰化过程提供了证据。