Ivanova Lada, Denisov Ilia G, Grinkova Yelena V, Sligar Stephen G, Fæste Christiane K
Chemistry and Toxinology Research Group, Norwegian Veterinary Institute, P.O. Box 750 Sentrum, 0106 Oslo, Norway.
Department of Biochemistry, University of Illinois, Urbana, IL 61802, USA.
Metabolites. 2019 Jul 27;9(8):158. doi: 10.3390/metabo9080158.
Enniatins (ENNs) are fungal secondary metabolites that frequently occur in grain in temperate climates. Their toxic potency is connected to their ionophoric character and lipophilicity. The biotransformation of ENNs predominantly takes place via cytochrome P450 3A (CYP 3A)-dependent oxidation reactions. Possible interaction with ENNs is relevant since CYP3A4 is the main metabolic enzyme for numerous drugs and contaminants. In the present study, we have determined the kinetic characteristics and inhibitory potential of ENNB1 in human liver microsomes (HLM) and CYP3A4-containing nanodiscs (ND). We showed in both in vitro systems that ENNB1 is mainly metabolised by CYP3A4, producing at least eleven metabolites. Moreover, ENNB1 significantly decreased the hydroxylation rates of the typical CYP3A4-substrate midazolam (MDZ). Deoxynivalenol (DON), which is the most prevalent mycotoxin in grain and usually co-occurrs with the ENNs, was not metabolised by CYP3A4 or binding to its active site. Nevertheless, DON affected the efficiency of this biotransformation pathway both in HLM and ND. The metabolite formation rates of ENNB1 and the frequently used drugs progesterone (PGS) and atorvastatin (ARVS) lactone were noticeably reduced, which indicated a certain affinity of DON to the enzyme with subsequent conformational changes. Our results emphasise the importance of drug-drug interaction studies, also with regard to natural toxins.
恩镰孢菌素(ENNs)是真菌次生代谢产物,在温带气候条件下常出现在谷物中。它们的毒性与其离子载体特性和亲脂性有关。ENNs的生物转化主要通过细胞色素P450 3A(CYP 3A)依赖性氧化反应进行。由于CYP3A4是众多药物和污染物的主要代谢酶,因此与ENNs的潜在相互作用具有重要意义。在本研究中,我们测定了ENNB1在人肝微粒体(HLM)和含CYP3A4的纳米盘(ND)中的动力学特征和抑制潜力。我们在两种体外系统中均表明,ENNB1主要由CYP3A4代谢,产生至少11种代谢产物。此外,ENNB1显著降低了典型CYP3A4底物咪达唑仑(MDZ)的羟化率。脱氧雪腐镰刀菌烯醇(DON)是谷物中最普遍的霉菌毒素,通常与ENNs同时出现,它不会被CYP3A4代谢或与其活性位点结合。然而,DON在HLM和ND中均影响了这条生物转化途径的效率。ENNB1以及常用药物孕酮(PGS)和阿托伐他汀(ARVS)内酯的代谢产物形成率显著降低,这表明DON与该酶具有一定亲和力,随后会发生构象变化。我们的结果强调了药物相互作用研究的重要性,对于天然毒素也是如此。