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首页> 外文期刊>Gene Expression Patterns: A Section of Mechanisms of Development >Transcriptome analysis in cardiomyocyte-specific differentiation of murine embryonic stem cells reveals transcriptional regulation network
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Transcriptome analysis in cardiomyocyte-specific differentiation of murine embryonic stem cells reveals transcriptional regulation network

机译:小鼠胚胎干细胞心肌细胞特异性分化中的转录组分析揭示了转录调控网络

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The differentiation to cardiomyocytes is a prerequisite and an important part of heart development. A good understanding of the complicated cardiomyocyte differentiation process benefits cardiogenesis study. Embryonic stem cells (ESCs), cell lines with infinite ability to proliferate and to be differentiated into all cell types of the adult body, are important research tools for investigation of differentiation and meanwhile good models for developmental research. In the current study, genome-wide gene expression of ESCs is profiled through high throughput platform during cardiomyocyte-specific differentiation and maturation. Gene expression patterns of undifferentiated ESCs and ESC-derived cardiomyocytes provide a global overview of genes involved in cardiomyocyte-specific differentiation, whereas marker gene expression profiles of both ESC-related genes and cardiac-specific genes presented the expression pattern shift during differentiation in a pure ESC-derived cardiomyocyte cell culture system. The differentiation and maturation process was completed at day 19 after initiation of differentiation, according to our gene expression profile results. Functional analysis of regulated genes reveals over-represented biological processes, molecular functions and pathways during the differentiation and maturation process. Finally, transcription factor regulation networks were engineered based on gene expression data. Within these networks, the number of identified important regulators (Trim28, E2f4, Foxm1, Myc, Hdac1, Rara, Mef2c, Nkx2-5, Gata4) and possible key co-regulation modules (Nkx2-5 - Gata4 - Tbx5, Myc - E2F4) could be expanded. We demonstrate that a more comprehensive picture of cardiomyocyte differentiation and its regulation can be achieved solely by studying gene expression patterns. The results from our study contribute to a better and more accurate understanding of the regulation mechanisms during cardiomyocyte differentiation. (C) 2014 Elsevier B.V. All rights reserved
机译:向心肌细胞的分化是心脏发育的先决条件和重要部分。对复杂的心肌细胞分化过程的良好理解有利于心脏发生研究。胚胎干细胞(ESCs)是具有无限增殖能力并能分化为成体的所有细胞类型的细胞系,是用于研究分化的重要研究工具,同时也是发展研究的良好模型。在当前的研究中,ESC的全基因组基因表达通过心肌细胞特异性分化和成熟过程中的高通量平台进行分析。未分化的ESC和ESC衍生的心肌细胞的基因表达模式提供了参与心肌细胞特异性分化的基因的全球概述,而ESC相关基因和心脏特异性基因的标志物基因表达谱均显示了纯分化过程中的表达模式转变ESC衍生的心肌细胞培养系统。根据我们的基因表达谱结果,分化和成熟过程在分化开始后第19天完成。调控基因的功能分析揭示了分化和成熟过程中过度代表的生物学过程,分子功能和途径。最后,基于基因表达数据设计了转录因子调控网络。在这些网络中,已识别的重要调节器的数量(Trim28,E2f4,Foxm1,Myc,Hdac1,Rara,Mef2c,Nkx2-5,Gata4)和可能的关键协同调节模块(Nkx2-5-Gata4-Tbx5,Myc-E2F4 )可以扩展。我们证明,仅通过研究基因表达模式就可以实现心肌细胞分化及其调控的更全面的图像。我们的研究结果有助于更好,更准确地了解心肌细胞分化过程中的调控机制。 (C)2014 Elsevier B.V.保留所有权利

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