Karolinska Institutet, Department of Neuroscience, Stockholm, Sweden.
Karolinska Institutet, Department of Neuroscience, Stockholm, Sweden.
Toxicol Appl Pharmacol. 2018 Sep 1;354:94-100. doi: 10.1016/j.taap.2018.02.021. Epub 2018 Feb 28.
Methylmercury (MeHg) is a widespread environmental contaminant with established developmental neurotoxic effects. Computational models have identified glucocorticoid receptor (GR) signaling to be a key mediator behind the birth defects induced by Hg, but the mechanisms were not elucidated. Using molecular dynamics simulations, we found that MeHg can bind to the GR protein at Cys736 (located close to the ligand binding site) and distort the conformation of the ligand binging site. To assess the functional consequences of MeHg interaction with GR, we used a human cell line expressing a luciferase reporter system (HeLa AZ-GR). We found that 100 nM MeHg does not have any significant effect on GR activity alone, but the transactivation of gene expression by GR upon Dex (a synthetic GR agonist) administration was reduced in cells pre-treated with MeHg. Similar effects were found in transgenic zebrafish larvae expressing a GR reporter system (SR4G). Next we asked whether the effects of developmental exposure to MeHg are mediated by the effects on GR. Using a mutant zebrafish line carrying a loss-of-function mutation in the GR (gr) we could show that the effects of developmental exposure to 2.5 nM MeHg are mitigated in absence of functional GR signaling. Taken together, our data indicate that inhibition of GR signaling may have a role in the developmental neurotoxic effects of MeHg.
甲基汞(MeHg)是一种广泛存在的环境污染物,具有明确的发育神经毒性作用。计算模型已经确定糖皮质激素受体(GR)信号转导是汞诱导出生缺陷的关键介质,但机制尚未阐明。通过分子动力学模拟,我们发现 MeHg 可以与 GR 蛋白在 Cys736 处结合(位于靠近配体结合位点的位置)并扭曲配体结合位点的构象。为了评估 MeHg 与 GR 相互作用的功能后果,我们使用了表达荧光素酶报告系统的人细胞系(HeLa AZ-GR)。我们发现,100 nM 的 MeHg 单独使用时对 GR 活性没有任何显著影响,但在用合成 GR 激动剂 Dex 处理后,GR 对基因表达的转录激活在预先用 MeHg 处理的细胞中减少。在表达 GR 报告系统(SR4G)的转基因斑马鱼幼虫中也发现了类似的效果。接下来,我们询问了发育过程中暴露于 MeHg 是否通过对 GR 的影响来介导。使用携带 GR(gr)功能丧失突变的突变斑马鱼系,我们可以证明在缺乏功能性 GR 信号转导的情况下,发育过程中暴露于 2.5 nM MeHg 的影响得到缓解。总之,我们的数据表明,GR 信号转导的抑制可能在 MeHg 的发育神经毒性作用中起作用。