Shen Xiuwei, Chen Fan, Chen Lanlan, Su Ying, Huang Ping, Ge Ren-Shan
Department of Pharmacy, The Third Affiliated Hospital of Wenzhou Medical University, Wenzhou, Zhejiang 325200, China.
Department of Anesthesiology, The Second Affiliated Hospital and Yuying Children's Hospital of Wenzhou Medical University, Wenzhou, Zhejiang 325027, China.
Biomed Res Int. 2017;2017:5829756. doi: 10.1155/2017/5829756. Epub 2017 Jul 24.
Exposure to environmental endocrine disruptors may interfere with nervous system's activity. Fungicides such as tebuconazole, triadimefon, and vinclozolin have antifungal activities and are used to prevent fungal infections in agricultural plants. In the present study, we studied effects of tebuconazole, triadimefon, and vinclozolin on rat's neurosteroidogenic 5-reductase 1 (5-Red1), 3-hydroxysteroid dehydrogenase (3-HSD), and retinol dehydrogenase 2 (RDH2). Rat's 5-Red1, 3-HSD, and RDH2 were cloned and expressed in COS-1 cells, and effects of these fungicides on them were measured. Tebuconazole and triadimefon competitively inhibited 5-Red1, with IC values of 8.670 ± 0.771 × 10 M and 17.390 ± 0.079 × 10 M, respectively, while vinclozolin did not inhibit the enzyme at 100 × 10 M. Triadimefon competitively inhibited 3-HSD, with IC value of 26.493 ± 0.076 × 10 M. Tebuconazole and vinclozolin weakly inhibited 3-HSD, with IC values about 100 × 10 M, while vinclozolin did not inhibit the enzyme even at 100 × 10 M. Tebuconazole and triadimefon weakly inhibited RDH2 with IC values over 100 × 10 M and vinclozolin did not inhibit this enzyme at 100 × 10 M. Docking study showed that tebuconazole, triadimefon, and vinclozolin bound to the steroid-binding pocket of 3-HSD. In conclusion, triadimefon potently inhibited rat's neurosteroidogenic enzymes, 5-Red1 and 3-HSD.
接触环境内分泌干扰物可能会干扰神经系统的活动。戊唑醇、三唑酮和乙烯菌核利等杀菌剂具有抗真菌活性,用于防止农业植物中的真菌感染。在本研究中,我们研究了戊唑醇、三唑酮和乙烯菌核利对大鼠神经甾体生成5-还原酶1(5-Red1)、3-羟基类固醇脱氢酶(3-HSD)和视黄醇脱氢酶2(RDH2)的影响。克隆大鼠的5-Red1、3-HSD和RDH2并在COS-1细胞中表达,然后测定这些杀菌剂对它们的影响。戊唑醇和三唑酮竞争性抑制5-Red1,IC值分别为8.670±0.771×10⁻⁶M和17.390±0.079×10⁻⁶M,而乙烯菌核利在100×10⁻⁶M时不抑制该酶。三唑酮竞争性抑制3-HSD,IC值为26.493±0.076×10⁻⁶M。戊唑醇和乙烯菌核利对3-HSD有微弱抑制作用,IC值约为100×10⁻⁶M,而乙烯菌核利即使在100×10⁻⁶M时也不抑制该酶。戊唑醇和三唑酮对RDH2有微弱抑制作用,IC值超过100×10⁻⁶M,乙烯菌核利在100×10⁻⁶M时不抑制该酶。对接研究表明,戊唑醇、三唑酮和乙烯菌核利与3-HSD的类固醇结合口袋结合。总之,三唑酮强烈抑制大鼠的神经甾体生成酶5-Red1和3-HSD。