首页> 外文期刊>Environmental health perspectives. >Global Gene Expression Analysis Reveals Dynamic and Developmental Stage–Dependent Enrichment of Lead-Induced Neurological Gene Alterations
【24h】

Global Gene Expression Analysis Reveals Dynamic and Developmental Stage–Dependent Enrichment of Lead-Induced Neurological Gene Alterations

机译:全局基因表达分析揭示了铅诱导的神经系统基因改变的动态和发育阶段依赖性的富集

获取原文
           

摘要

Background The underlying genetic mechanisms specific to subtle neurological alterations associated with environmental lead (Pb) exposures have not been clearly elucidated. Objectives The goal of this study was to identify novel gene targets and the underlying genetic mechanisms associated with developmental Pb neurotoxicity. Methods We first exposed zebrafish embryos to a range of Pb concentrations throughout early development to establish relative toxicity. Using the data from that experiment, we exposed another group of zebrafish embryos to a sublethal dose of Pb (100 ppb) immediately after fertilization through 72 or 120 hr postfertilization (hpf). Global gene expression was then analyzed for molecular pathways and gene ontology enrichment, and Western blot analysis was performed to investigate the translation of gene expression changes to protein levels. Results After 72 hpf, we identified 231 probes representing 90 nonredundant genes with well-established function or orthology to human genes as being altered by Pb exposure. This gene set was both confirmatory and novel in nature and was highly enriched for neurological development, function, and disease. Moreover, gene changes at this time point were correlated to altered protein levels. Alternatively, the gene set at 120 hpf did not share association with neurological development. Conclusions Global gene expression alterations associated with developmental Pb exposure were dynamic and dependent on developmental stage. Gene expression alterations at the 72-hpf time point were highly enriched with genes and molecular pathways associated with neurological development and disease. Moreover, we identified a number of novel targets for future exploration into their role in the genetic mechanisms underlying Pb-induced neurological alterations.
机译:背景技术尚未明确阐明与环境铅(Pb)暴露相关的细微神经系统改变的潜在遗传机制。目的这项研究的目的是确定新的基因靶标和与发育性铅神经毒性相关的潜在遗传机制。方法我们首先在整个早期发育过程中将斑马鱼胚胎暴露于一定范围的Pb浓度下,以建立相对毒性。使用该实验的数据,我们在受精后72或120 hr(hpf)后立即将另一组斑马鱼胚胎暴露于亚致死剂量的Pb(100 ppb)。然后分析全局基因表达的分子途径和基因本体富集,并进行蛋白质印迹分析以研究基因表达变化到蛋白质水平的翻译。结果72 hpf后,我们鉴定了231个代表90种非冗余基因的探针,这些基因具有与人类基因完全相同的功能或直系同源性,并受Pb暴露的影响而改变。该基因集在本质上既是确定性的又是新颖的,并且高度丰富了神经系统的发育,功能和疾病。而且,此时的基因变化与蛋白质水平的变化有关。另外,设定为120 hpf的基因与神经系统发育不共享关联。结论与发育性铅暴露相关的全球基因表达变化是动态的,并取决于发育阶段。在72hpf的时间点,基因表达的变化高度丰富了与神经系统发育和疾病相关的基因和分子途径。此外,我们确定了许多新的靶标,以供将来探索其在铅诱导的神经系统改变的遗传机制中的作用。

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