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High-resolution analysis with novel cell-surface markers identifies routes to iPS cells

机译:利用新型细胞表面标记物进行的高分辨率分析可确定通往iPS细胞的途径

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摘要

The generation of induced pluripotent stem (iPS) cells presents a challenge to normal developmental processes. The low efficiency and heterogeneity of most methods have hindered understanding of the precise molecular mechanisms promoting, and roadblocks preventing, efficient reprogramming. Although several intermediate populations have been described, it has proved difficult to characterize the rare, asynchronous transition from these intermediate stages to iPS cells. The rapid expansion of minor repro-grammed cells in the heterogeneous population can also obscure investigation of relevant transition processes. Understanding the biological mechanisms essential for successful iPS cell generation requires both accurate capture of cells undergoing the reprogramming process and identification of the associated global gene expression changes. Here we demonstrate that in mouse embryonic fibroblasts, reprogramming follows an orderly sequence of stage transitions, marked by changes in the cell-surface markers CD44 and ICAM1, and a Nanog-enhanced green fluorescent protein (Nanog-eGFP) reporter. RNA-sequencing analysis of these populations demonstrates two waves of pluripotency gene upregulation, and unexpectedly, transient upregulation of several epidermis-related genes, demonstrating that reprogramming is not simply the reversal of the normal developmental processes. This novel high-resolution analysis enables the construction of a detailed reprogramming route map, and the improved understanding of the reprogramming process will lead to new reprogramming strategies.
机译:诱导多能干(iPS)细胞的产生对正常发育过程提出了挑战。大多数方法的低效率和异质性阻碍了对促进高效重编程的精确分子机制的理解,并阻碍了阻碍。尽管已描述了几种中间种群,但已证明很难表征从这些中间阶段到iPS细胞的罕见,异步过渡。在异质群体中次要重编程细胞的快速扩增也可能掩盖相关过渡过程的研究。了解成功iPS细胞生成必不可少的生物学机制,既需要准确捕获正在进行重编程过程的细胞,也需要识别相关的整体基因表达变化。在这里,我们证明,在小鼠胚胎成纤维细胞中,重编程遵循阶段过渡的有序序列,其特征是细胞表面标记CD44和ICAM1的变化以及Nanog增强的绿色荧光蛋白(Nanog-eGFP)报告基因。这些人群的RNA测序分析显示了两波多能性基因上调,并且出乎意料的是,几个表皮相关基因的瞬时上调,这表明重编程不仅是正常发育过程的逆转。这种新颖的高分辨率分析能够构建详细的重编程路线图,并且对重编程过程的更好理解将导致新的重编程策略。

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  • 来源
    《Nature》 |2013年第7456期|88-91|共4页
  • 作者单位

    MRC Centre for Regenerative Medicine, University of Edinburgh, Edinburgh BioQuarter, 5 Little France Drive, Edinburgh EH 16 4UU, UK;

    Stem Cell Dynamics Research Unit, Helmholtz Center Munich,Ingolstadter Landstraße 1,85764 Neuherberg, Germany;

    MRC Centre for Regenerative Medicine, University of Edinburgh, Edinburgh BioQuarter, 5 Little France Drive, Edinburgh EH 16 4UU, UK;

    MRC Centre for Regenerative Medicine, University of Edinburgh, Edinburgh BioQuarter, 5 Little France Drive, Edinburgh EH 16 4UU, UK;

    MRC Centre for Regenerative Medicine, University of Edinburgh, Edinburgh BioQuarter, 5 Little France Drive, Edinburgh EH 16 4UU, UK;

    Laboratory for Molecular Neurobiology, Department of Medical Biochemistry and Biophysics, Karolinska Institute, Scheeles vag 1, SE-171 77 Stockholm, Sweden;

    MRC Centre for Regenerative Medicine, University of Edinburgh, Edinburgh BioQuarter, 5 Little France Drive, Edinburgh EH 16 4UU, UK;

    Laboratory for Molecular Neurobiology, Department of Medical Biochemistry and Biophysics, Karolinska Institute, Scheeles vag 1, SE-171 77 Stockholm, Sweden;

    MRC Centre for Regenerative Medicine, University of Edinburgh, Edinburgh BioQuarter, 5 Little France Drive, Edinburgh EH 16 4UU, UK;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
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