Department of Molecular Pharmacology, Albert Einstein College of Medicine, 1300 Morris Park Avenue, 10461, Bronx, NY, USA.
Laboratorio de Aminoácidos Excitadores, Instituto Nacional de Neurología y Neurocirugía, 14269, Mexico City, Mexico.
Free Radic Biol Med. 2021 Aug 1;171:245-259. doi: 10.1016/j.freeradbiomed.2021.05.024. Epub 2021 May 16.
Oxidative stress, impairment of antioxidant defenses, and disruption of calcium homeostasis are associated with the toxicity of methylmercury (MeHg). Yet, the relative contribution and interdependence of these effects and other molecular mechanisms that mediate MeHg-induced neurotoxicity remain uncertain. The signal transducer and activator of transcription 3 (STAT3) is a transcription factor that regulates the expression of anti-apoptotic and cell cycle progression genes. In addition to its role in cell growth and survival, STAT3 regulates redox homeostasis and prevents oxidative stress by the modulation of nuclear genes that encode for electron transport complexes (ETC) and antioxidant enzymes. Here we tested the hypothesis that STAT3 contributes to the orchestration of the antioxidant defense response against MeHg injury. We show that MeHg (>1 μM) exposure induced STAT3 activation within 1 h and beyond in mouse hypothalamic neuronal GT1-7 cells in a concentration-and time-dependent manner. Pharmacological inhibition of STAT3 phosphorylation exacerbated MeHg-induced reactive oxygen species (ROS) production and antioxidant responses. Finally, treatment with the antioxidant Trolox demonstrated that MeHg-induced STAT3 activation is mediated, at least in part, by MeHg-induced ROS generation. Combined, our results demonstrated a role for the STAT3 signaling pathway as an early response to MeHg-induced oxidative stress.
氧化应激、抗氧化防御损伤和钙稳态失衡与甲基汞(MeHg)的毒性有关。然而,这些影响的相对贡献和相互依赖性,以及介导 MeHg 诱导神经毒性的其他分子机制仍然不确定。信号转导子和转录激活子 3(STAT3)是一种转录因子,可调节抗细胞凋亡和细胞周期进程基因的表达。除了在细胞生长和存活中的作用外,STAT3 通过调节编码电子传递复合物(ETC)和抗氧化酶的核基因来调节氧化还原稳态并防止氧化应激。在这里,我们检验了 STAT3 有助于协调针对 MeHg 损伤的抗氧化防御反应的假设。我们表明,MeHg(>1μM)暴露以浓度和时间依赖的方式在 1 小时内并在 GT1-7 细胞中诱导 STAT3 激活。STAT3 磷酸化的药理学抑制加剧了 MeHg 诱导的活性氧(ROS)产生和抗氧化反应。最后,用抗氧化剂 Trolox 进行处理的实验表明,MeHg 诱导的 STAT3 激活至少部分是由 MeHg 诱导的 ROS 生成介导的。综合来看,我们的结果表明 STAT3 信号通路在 MeHg 诱导的氧化应激的早期反应中发挥作用。