Global transcriptional analysis of nuclear reprogramming in the transition from MEF s to iPSC s

Induced pluripotent stem cells ( iPSC s) are flourishing in the investigation of cell reprogramming. However, we still know little about the sequential molecular mechanism during somatic cell reprogramming (SCR). Here, we first observed rapid generation of colonies whereas mouse embryonic fibroblast...

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Veröffentlicht in:Genes to cells : devoted to molecular & cellular mechanisms 2013-01, Vol.18 (1), p.42-55
Hauptverfasser: Dong, Fulu, Song, Zhenwei, Zhang, Jinping, Lu, Youde, Song, Chunlei, Jiang, BaoChun, Zhang, Baole, Cong, Peiqing, Sun, Hongyan, Shi, Fangxiong, Liu, Honglin
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Sprache:eng
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Zusammenfassung:Induced pluripotent stem cells ( iPSC s) are flourishing in the investigation of cell reprogramming. However, we still know little about the sequential molecular mechanism during somatic cell reprogramming (SCR). Here, we first observed rapid generation of colonies whereas mouse embryonic fibroblasts (MEFs) were induced by OCT4, SOX2, KLF4 (OSK), and vitamin C for 7 days. The colony's global transcriptional profiles were analyzed using Affymetrix microarray. Microarray data confirmed that SCR was a process in which transcriptome got reversed and pluripotent genes expressed de novo . There were many changes, especially substantial growth expression of epigenetic factors, on transcriptome during the transition from Day 7 to iPSC s indicating that this period may provide ‘flexibility’ genome structure, chromatin remodeling, and epigenetic modifications to rebind to the transcriptional factors. Several biological processes such as viral immune response, apoptosis, cell fate specification, and cell communication were mainly involved before Day 7 whereas cell cycle, DNA methylation, and histone modification were mainly involved after Day 7. Furthermore, it was suggested that p53 signaling contributed to the transition ‘hyperdynamic plastic’ cell state and assembled cell niche for SCR, and small molecular compounds useful for chromatin remodeling can enhance iPSC s by exciting epigenetic modification rather than the exogenous expression of more TFs vectors.
ISSN:1356-9597
1365-2443
DOI:10.1111/gtc.12017