Unitat de Bioquimica, Facultat de Medicina i Ciències de la Salut, Universitat Rovira i Virgili, C./St. Llorenç 21, 43201 Reus, Tarragona, Spain.
Toxicol In Vitro. 2010 Mar;24(2):465-71. doi: 10.1016/j.tiv.2009.09.023. Epub 2009 Oct 6.
Caspase-3 is a key protein involved in the classical apoptosis mechanism in neurons, as in many other cells types. In the present research, we describe the transcriptional activity of caspase-3 gene as a marker of acute toxicity in a primary culture model of rat cerebellar granule neurons (CGNs). CGNs were incubated for 16h in complete medium containing the chemicals at three concentrations (10, 100microM and 1mM). A total of 48 different compounds were tested. Gene transcriptional activity was determined by low-density array assays, and by single Taqman caspase-3 assays. Results from the PCR arrays showed that the caspase-3 gene was up-regulated when CGNs were exposed to neurotoxic chemicals. Significative correlations were found between the transcriptional activity of caspase-3 and the activity of some other genes related to apoptosis, cell-cycle and ROS detoxification. In our experiments, acute exposure of CGNs to well-documented pro-apoptotic xenobiotics modulated significantly caspase-3 gene expression, whereas chemicals not related to apoptosis did not modify caspase-3 gene expression. In conclusion, acute exposure of CGNs to neurotoxic compounds modulates the transcriptional activity of genes involved in the classical apoptotic pathway, oxidative stress and cell-cycle control. Transcriptional activity of caspase-3 correlates significantly with these changes and it could be a good indicator of acute neurotoxicity.
Caspase-3 是神经元中经典细胞凋亡机制的关键蛋白,在许多其他细胞类型中也是如此。在本研究中,我们描述了 caspase-3 基因的转录活性作为大鼠小脑颗粒神经元 (CGN) 原代培养模型中急性毒性的标志物。CGN 在含有三种浓度(10、100μM 和 1mM)的化学物质的完全培养基中孵育 16 小时。共测试了 48 种不同的化合物。通过低密度阵列测定和单个 Taqman caspase-3 测定来确定基因转录活性。PCR 阵列的结果表明,当 CGN 暴露于神经毒性化学物质时,caspase-3 基因被上调。caspase-3 与其他一些与细胞凋亡、细胞周期和 ROS 解毒相关的基因的转录活性之间存在显著相关性。在我们的实验中,CGN 急性暴露于有明确记载的促凋亡外来化合物显著调节 caspase-3 基因表达,而与细胞凋亡无关的化学物质不会改变 caspase-3 基因表达。总之,CGN 急性暴露于神经毒性化合物会调节参与经典凋亡途径、氧化应激和细胞周期控制的基因的转录活性。caspase-3 的转录活性与这些变化显著相关,它可能是急性神经毒性的良好指标。