首页> 外文期刊>Chemical research in toxicology >An approach to investigate intracellular protein network responses
【24h】

An approach to investigate intracellular protein network responses

机译:研究细胞内蛋白质网络反应的方法

获取原文
获取原文并翻译 | 示例
           

摘要

Modern toxicological evaluations have evolved to consider toxicity as a perturbation of biological pathways or networks. As such, toxicity testing approaches are shifting from common end point evaluations to pathway based approaches, where the degree of perturbation of select biological pathways is monitored. These new approaches are greatly increasing the data available to toxicologists, but methods of analyses to determine the inter-relationships between potentially affected pathways are needed to fully understand the consequences of exposure. An approach to construct dose-response curves that use graph theory to describe network perturbations among three disparate mitogen-activated protein kinase (MAPK) pathways is presented. Mitochondrial stress was induced in human hepatocytes (HepG2) by exposing the cells to increasing doses of the complex I inhibitor, deguelin. The relative phosphorylation responses of proteins involved in the regulation of the stress response were measured. Graph theory was applied to the phosphorylation data to obtain parameters describing the network perturbations at each individual dose tested. The graph theory results depicted the dynamic nature of the relationship between p38, JNK, and ERK1/2 under conditions of mitochondrial stress and revealed shifts in the relationships between these MAPK pathways at low doses. The inter-relationship, or crosstalk, among these 3 traditionally linear MAPK cascades was further probed by coexposing cells to deguelin plus SB202190 (JNK and p38 inhibitor) or deguelin plus SB202474 (JNK inhibitor). The cells exposed to deguelin plus SB202474 resulted in significantly decreased viability, which could be visualized and attributed to the decrease of ERK1/2 network centrality. The approach presented here allows for the construction and visualization of dose-response curves that describe network perturbations induced by chemical stress, which provides an informative and sensitive means of assessing toxicological effects on biological systems.
机译:现代毒理学评估已演变为将毒性视为对生物途径或网络的扰动。因此,毒性测试方法正在从常见的端点评估方法转变为基于途径的方法,在该方法中,对选定生物途径的扰动程度进行监控。这些新方法极大地增加了毒理学家可用的数据,但是需要使用分析方法来确定潜在受影响途径之间的相互关系,以充分了解暴露的后果。提出了一种构建剂量反应曲线的方法,该曲线使用图论来描述三种不同的促分裂原激活蛋白激酶(MAPK)途径之间的网络扰动。通过将人类细胞暴露于剂量增加的复合物I抑制剂deguelin,可以诱导人肝细胞(HepG2)发生线粒体应激。测量了参与应激反应调节的蛋白质的相对磷酸化反应。将图论应用于磷酸化数据,以获得描述每个测试剂量下网络扰动的参数。图论结果描述了线粒体应激条件下p38,JNK和ERK1 / 2之间关系的动态性质,并揭示了低剂量时这些MAPK途径之间关系的变化。通过将细胞与deguelin加SB202190(JNK和p38抑制剂)或deguelin加SB202474(JNK抑制剂)共暴露,进一步探测了这3个传统的线性MAPK级联反应之间的相互关系或串扰。暴露于deguelin加SB202474的细胞导致活力显着降低,这可以被可视化,并归因于ERK1 / 2网络中心性的降低。此处介绍的方法可用于构建剂量响应曲线并对其进行可视化,从而描述化学应力引起的网络扰动,从而提供了一种信息学和敏感的方法来评估对生物系统的毒理学影响。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号