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Coordinated waves of gene expression during neuronal differentiation of embryonic stem cells as basis for novel approaches to developmental neurotoxicity testing

机译:胚胎干细胞神经元分化过程中基因表达的协调波作为发展性神经毒性测试新方法的基础

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摘要

As neuronal differentiation of embryonic stem cells (ESCs) recapitulates embryonic neurogenesis, disturbances of this process may model developmental neurotoxicity (DNT). To identify the relevant steps of in vitro neurodevelopment, we implemented a differentiation protocol yielding neurons with desired electrophysiological properties. Results from focussed transcriptional profiling suggested that detection of non-cytotoxic developmental disturbances triggered by toxicants such as retinoic acid (RA) or cyclopamine was possible. Therefore, a broad transcriptional profile of the 20-day differentiation process was obtained. Cluster analysis of expression kinetics, and bioinformatic identification of overrepresented gene ontologies revealed waves of regulation relevant for DNT testing. We further explored the concept of superimposed waves as descriptor of ordered, but overlapping biological processes. The initial wave of transcripts indicated reorganization of chromatin and epigenetic changes. Then, a transient upregulation of genes involved in the formation and patterning of neuronal precursors followed. Simultaneously, a long wave of ongoing neuronal differentiation started. This was again superseded towards the end of the process by shorter waves of neuronal maturation that yielded information on specification, extracellular matrix formation, disease-associated genes and the generation of glia. Short exposure to lead during the final differentiation phase, disturbed neuronal maturation. Thus, the wave kinetics and the patterns of neuronal specification define the time windows and end points for examination of DNT.
机译:随着胚胎干细胞(ESC)的神经元分化概括了胚胎神经发生,该过程的紊乱可能会模拟发育性神经毒性(DNT)。为了确定体外神经发育的相关步骤,我们实施了分化协议,以产生具有所需电生理特性的神经元。聚焦转录谱的结果表明,检测由视黄酸(RA)或环巴胺等有毒物质触发的非细胞毒性发育障碍是可能的。因此,获得了20天分化过程的广泛转录谱。表达动力学的聚类分析和过度代表的基因本体论的生物信息学鉴定揭示了与DNT测试相关的调节波。我们进一步探讨了叠加波作为有序但重叠的生物学过程的描述符的概念。最初的转录本表明染色质的重组和表观遗传变化。然后,随后涉及神经元前体的形成和模式的基因的瞬时上调。同时,一波持续的神经元分化开始了。在过程结束时,这又被较短的神经元成熟波所取代,从而产生了有关规格,细胞外基质形成,疾病相关基因和胶质细胞生成的信息。在最终分化阶段短时间接触铅,扰乱了神经元成熟。因此,波动力学和神经元特征的模式定义了检查DNT的时间窗口和终点。

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