Department of Food Science and Biotechnology, Dongguk University, Goyang, 10326, Republic of Korea.
Department of Food Science and Biotechnology, Chung-Ang University, Anseong, 17546, Republic of Korea.
Reprod Toxicol. 2021 Mar;100:52-59. doi: 10.1016/j.reprotox.2020.12.014. Epub 2020 Dec 17.
The presence of cyclic depsipeptide mycotoxins in foods and feedstuffs could potentially cause endocrine disrupting effects on humans and wildlife by their inhibition of active steroidogenesis. Therefore, we attempted to assess the human estrogen receptor (ER) and androgen receptor (AR) agonistic/antagonistic effects of representative cyclic depsipeptide mycotoxins, enniatin A1 (ENN A1), and enniatin B1 (ENN B1), by OECD Performand Based Test Guideline (PBTG) No.455, VM7Luc ER transcriptional activation (TA) assay and OECD TG No. 458, 22Rv1/MMTV_GR-KO AR TA assay. No tested cyclic depsipeptide mycotoxins were found to be ER and AR agonists in VM7Luc ER TA and 22Rv1/MMTV_GR-KO AR TA assays. On the other hand, ENN A1, and ENN B1 exhibited the ER and AR antagonistic effects with IC and IC values in both TA assays. These two cyclic depsipeptide mycotoxins, which were determined as ER and AR antagonists by two in vitro assays, bound to ERα, and AR. Then ENN A1, and ENN B1 inhibited the dimerization of ERα, and AR. These results, for the first time indicated that ENN A1, and ENN B1 could have potential endocrine disrupting effects mediated by interaction of ERα and AR using international standard testing methods to determine the potential endocrine disrupting chemical.
食品和饲料中存在的环二肽霉菌毒素,通过抑制活性甾体生成,可能对人类和野生动物产生内分泌干扰作用。因此,我们试图采用经合组织基于性能的测试指南(PBTG)第 455 号、VM7Luc 雌激素受体转录激活(TA)测定和经合组织 TG 第 458 号、22Rv1/MMTV_GR-KO 雄激素受体 TA 测定,评估代表性环二肽霉菌毒素恩纳肽 A1(ENN A1)和恩纳肽 B1(ENN B1)对人类雌激素受体(ER)和雄激素受体(AR)的激动/拮抗作用。在 VM7Luc ER TA 和 22Rv1/MMTV_GR-KO AR TA 测定中,未发现测试的环二肽霉菌毒素对 ER 和 AR 具有激动作用。另一方面,ENN A1 和 ENN B1 在这两种 TA 测定中表现出 ER 和 AR 拮抗作用,其 IC 和 IC 值均较低。这两种环二肽霉菌毒素通过两种体外测定被确定为 ER 和 AR 拮抗剂,它们与 ERα和 AR 结合。然后,ENN A1 和 ENN B1 抑制了 ERα和 AR 的二聚化。这些结果首次表明,ENN A1 和 ENN B1 可能通过与 ERα和 AR 的相互作用,对内分泌产生潜在的干扰作用,采用国际标准测试方法来确定潜在的内分泌干扰化学物质。