| Literature DB >> 28032868 |
Francesca Grespi1, Vivien Landré2, Alina Molchadsky3, Nicola Di Daniele4, Luigi Tonino Marsella4, Gerry Melino2,4, Varda Rotter3.
Abstract
The tumour suppressor p53 plays an important role in somatic cell reprogramming. While wild-type p53 reduces reprogramming efficiency, mutant p53 exerts a gain of function activity that leads to increased reprogramming efficiency. Furthermore, induced pluripotent stem cells expressing mutant p53 lose their pluripotency in vivo and form malignant tumours when injected in mice. It is therefore of great interest to identify targets of p53 (wild type and mutant) that are responsible for this phenotype during reprogramming, as these could be exploited for therapeutic use, that is, formation of induced pluripotent stem cells with high reprogramming efficiency, but no oncogenic potential. Here we studied the transcriptional changes of microRNA in a series of mouse embryonic fibroblasts that have undergone transition to induced pluripotent stem cells with wild type, knock out or mutant p53 status in order to identify microRNAs whose expression during reprogramming is dependent on p53. We identified a number of microRNAs, with known functions in differentiation and carcinogenesis, the expression of which was dependent on the p53 status of the cells. Furthermore, we detected several uncharacterised microRNAs that were regulated differentially in the different p53 backgrounds, suggesting a novel role of these microRNAs in reprogramming and pluripotency.Entities:
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Year: 2016 PMID: 28032868 PMCID: PMC5260988 DOI: 10.1038/cddis.2016.419
Source DB: PubMed Journal: Cell Death Dis Impact factor: 8.469
Figure 1A number of miRNAs involved in differentiation are up/downregulated during the MEF to iPS cell transition independent of the cell's p53 status. MiRNAs levels were examined upon transition from MEFs to iPS cell using microarray analysis. Selected miRNAs that were induced (a) or decreased (b) in all genetic backgrounds, that is, p53 wt, p53R172H and p53 KO (NRQ=normalised relative quantities)
Figure 2Several miRNAs are regulated exclusively in p53 wt cells. MiRNAs levels were examined upon transition from MEFs to iPS cells using microarray analysis. Selected miRNAs that were induced exclusively in p53 wt cells (a), only detected in p53 wt cells (b) and downregulated in p53 wt cells (c) are shown
Figure 3Levels of some miRNAs change solely in p53R172H and p53 KO cells during the MEF to iPS cell transition. Analysis of miRNAs levels upon transition from MEFs to iPS cells highlighted miRNAs that were regulated differentially depending on the cell's p53 status. Here miRNAs that were induced (a) or decreased (b) in p53R172H and p53 KO cells, while unchanged in a p53 wt background are shown
Figure 4Complex regulation of miRNAs during the induced transition from MEF to iPS cells depending on p53. Analysis of miRNAs levels upon transition from MEFs to iPS cell revealed a group of miRNAs that was upregulated (a) or downregulated (b) only in p53R172H iPS cell, while unchanged in the other groups, and miRNAs whose expression was induced in p53 wt while reduced in KO or p53 mutant cells (c) or vice versa (d)